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The readouts a pathology report gives (PD-L1 CPS, HER2 IHC 3+, MSI-high), each under its gene or protein, with the thresholds approvals use and the tests that measure them.
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PD-L1 CPS (combined positive score) CD274 CPS counts every PD-L1-stained cell in the tumour, immune cells included, and divides by the number of tumour cells. Pembrolizumab labels use CPS 1 or CPS 10 as the gate in head and neck, stomach, oesophageal, cervical, ovarian and triple-negative breast cancer. | CD274 | 10 | Head and neck squamous cell carcinoma, Gastric & gastro-oesophageal junction cancer, HER2-positive gastric cancer | Pembrolizumab, Nivolumab, Sacituzumab govitecan | |
HER2 IHC 3+ (HER2-positive by immunohistochemistry) ERBB2 IHC 3+ means strong, complete membrane staining for HER2 in more than 10 percent of tumour cells. It is HER2-positive without needing a gene test and is the gate for trastuzumab, its combinations and antibody-drug conjugates in breast, stomach, biliary and, since 2024, any solid tumour. | ERBB2 | 8 | HER2-positive breast cancer, Early HER2-positive breast cancer, HER2-positive gastric cancer | Trastuzumab, Pertuzumab, Trastuzumab emtansine | |
BRAF V600E (and V600K) BRAF V600E is the BRAF change that drives half of melanomas and many thyroid, bowel, lung and brain tumours. BRAF plus MEK inhibitors are approved for it in melanoma, lung, thyroid and, tumour-agnostically, any solid tumour; in bowel cancer it is treated with encorafenib and cetuximab. | BRAF | 6 | Melanoma, Advanced melanoma, Colorectal cancer | Dabrafenib, Trametinib, Dabrafenib + trametinib | |
Homologous recombination repair gene mutation in prostate cancer BRCA1, BRCA2 A fault in one of the genes a cell uses to mend broken DNA. It decides whether a PARP inhibitor can be prescribed, but the list of genes that counts is different for each of the four approved routes, and the evidence behind them is mostly evidence about BRCA2. | BRCA1, BRCA2 | 6 | Prostate cancer, Metastatic castration-resistant prostate cancer, Metastatic hormone-sensitive prostate cancer | Olaparib, Rucaparib, Niraparib | |
ALK fusion (ALK-positive) ALK An ALK fusion, usually EML4::ALK, is a swapped piece of chromosome 2 that turns the ALK kinase on permanently in about 4 percent of lung adenocarcinomas. Seven ALK inhibitors are approved for it, including alectinib after surgery. | ALK | 5 | Non-small-cell lung cancer, Pancreatic ductal adenocarcinoma, KRAS wild-type pancreatic ductal adenocarcinoma | Alectinib, Lorlatinib, Crizotinib | |
dMMR (mismatch repair deficiency by IHC) MLH1, MSH2, MSH6, PMS2 dMMR means one of the four mismatch repair proteins is missing from the tumour cell nuclei on a stain. It is the tissue-level twin of MSI-high and opens checkpoint immunotherapy in endometrial, bowel and many other cancers. | MLH1, MSH2, MSH6, PMS2 | 4 | Endometrial cancer, Mismatch-repair-deficient endometrial cancer, Colorectal cancer | Pembrolizumab, Dostarlimab, Nivolumab | |
EGFR exon 19 deletion EGFR An exon 19 deletion removes a few amino acids from the EGFR kinase and leaves it switched on. With L858R it makes up about 85 percent of EGFR-mutant lung cancer and is the classic gate for osimertinib and the other EGFR inhibitors. | EGFR | 4 | Non-small-cell lung cancer | Osimertinib, Erlotinib, Gefitinib | |
Germline BRCA1/2 pathogenic variant (gBRCAm) BRCA1, BRCA2 A germline BRCA1 or BRCA2 variant is inherited and present in every cell, found by a blood test. It selects PARP inhibitors in breast, ovarian, pancreatic and prostate cancer and tells relatives they may carry it too. | BRCA1, BRCA2 | 4 | Breast cancer, Triple-negative breast cancer, HR-positive / HER2-negative breast cancer | Olaparib, Talazoparib, Niraparib | |
KRAS G12C KRAS KRAS G12C swaps glycine 12 for cysteine and was the first KRAS mutation a drug could grip. Sotorasib and adagrasib are approved for it in lung cancer, and with an EGFR antibody in bowel cancer. | KRAS | 4 | Non-small-cell lung cancer, Colorectal cancer, Pancreatic ductal adenocarcinoma | Sotorasib, Adagrasib, Divarasib | |
MSI-high (microsatellite instability by PCR or sequencing) MLH1, MSH2, MSH6, PMS2 MSI-high means the tumour's DNA has unstable repeat sequences, the footprint of failed mismatch repair. It is measured by PCR or sequencing, gives the same answer as dMMR in most tumours, and unlocks the same immunotherapies. | MLH1, MSH2, MSH6, PMS2 | 4 | Colorectal cancer, Endometrial cancer, Mismatch-repair-deficient endometrial cancer | Pembrolizumab, Nivolumab, Ipilimumab | |
ROS1 fusion (ROS1-positive) ROS1 A ROS1 fusion drives about 1 to 2 percent of lung adenocarcinomas and behaves much like ALK. Crizotinib, entrectinib, repotrectinib and taletrectinib are approved for it. | ROS1 | 4 | Non-small-cell lung cancer | Crizotinib, Entrectinib, Repotrectinib | |
Tumour (somatic or germline) BRCA1/2 mutation and HRR gene alterations BRCA1, BRCA2 Tumour BRCA testing finds BRCA1/2 mutations in the cancer itself, whether inherited or acquired; wider panels add other repair genes such as ATM and PALB2. Ovarian and prostate cancer labels accept the tumour result for PARP inhibitors. | BRCA1, BRCA2 | 4 | Ovarian cancer, High-grade serous ovarian cancer, Platinum-sensitive ovarian cancer | Olaparib, Rucaparib, Talazoparib | |
ER status (oestrogen receptor by IHC) ESR1 ER status is whether the tumour's cells carry the oestrogen receptor, read by staining nuclei. One percent or more of stained nuclei is positive and means hormone-blocking treatment can work; 1 to 10 percent is 'low positive' and behaves more like negative. | ESR1 | 3 | HR-positive / HER2-negative breast cancer, Breast cancer, High-risk early HR-positive breast cancer | Tamoxifen, Letrozole, Fulvestrant | |
FLT3-ITD (internal tandem duplication) FLT3 FLT3-ITD is a duplicated stretch of the FLT3 receptor gene found in about a quarter of acute myeloid leukaemias; it makes relapse more likely and is treated with midostaurin, quizartinib or gilteritinib. | FLT3 | 3 | Acute myeloid leukaemia, FLT3-mutated acute myeloid leukaemia | Midostaurin, Quizartinib, Gilteritinib | |
HER2 ISH amplified (ERBB2 gene amplification) ERBB2 ISH counts copies of the HER2 gene in each tumour cell. A ratio of 2 or more against the chromosome 17 control, or 6 or more copies per cell, is amplified and HER2-positive whatever the protein stain showed. | ERBB2 | 3 | HER2-positive breast cancer, HER2-positive gastric cancer, Early HER2-positive breast cancer | Trastuzumab, Pertuzumab, Trastuzumab emtansine | |
IDH1 R132 mutation IDH1, IDH2 IDH1 R132 mutations turn a metabolic enzyme into a producer of the oncometabolite 2-HG. They define lower-grade gliomas and occur in acute myeloid leukaemia and bile duct cancer, each with an approved IDH1 inhibitor. | IDH1, IDH2 | 3 | Acute myeloid leukaemia, IDH1- and IDH2-mutated acute myeloid leukaemia, Biliary tract cancer | Ivosidenib, Olutasidenib, Vorasidenib | |
NRG1 gene fusion ERBB3 A rare fusion that joins the neuregulin 1 gene to a partner, leaving the HER3 ligand stuck on the cell surface where it switches HER3 on continuously. It is found in a small percentage of lung adenocarcinomas, particularly invasive mucinous adenocarcinoma in people who have never smoked, and in pancreatic and biliary cancers, and zenocutuzumab is approved for it. | ERBB3 | 3 | Non-small-cell lung cancer, Pancreatic ductal adenocarcinoma, Biliary tract cancer | Zenocutuzumab | |
PD-L1 TC score (tumour-cell score, SP263 and 28-8) CD274 The TC score is the percentage of tumour cells staining for PD-L1 on the SP263 or 28-8 assays. Atezolizumab uses 1 percent after lung surgery and 50 percent for first-line treatment alone; nivolumab with ipilimumab uses 1 percent in first-line lung cancer. | CD274 | 3 | Non-small-cell lung cancer | Atezolizumab, Nivolumab, Ipilimumab | |
PD-L1 TPS (tumour proportion score) CD274 TPS is the share of tumour cells whose membrane stains for PD-L1, ignoring immune cells. In lung cancer it decides whether pembrolizumab or cemiplimab can be given alone: 1 percent opens the door, 50 percent is where single-agent treatment is strongest. | CD274 | 3 | Non-small-cell lung cancer, Lung cancer, Gallbladder cancer | Pembrolizumab, Cemiplimab, PD-L1 IHC 22C3 pharmDx | |
PIK3CA mutation PIK3CA PIK3CA mutations in the helical and kinase domains are found in about 40 percent of hormone-receptor-positive breast cancers. Alpelisib, inavolisib and capivasertib are approved for tumours that carry them. | PIK3CA | 3 | HR-positive / HER2-negative breast cancer, HR-positive metastatic breast cancer after CDK4/6 inhibitors, Endometrial cancer | Alpelisib, Inavolisib, Capivasertib | |
RET fusion and RET mutation RET RET fusions drive 1 to 2 percent of lung cancers and some thyroid cancers; RET point mutations drive medullary thyroid cancer. Selpercatinib is approved for RET fusions in any solid tumour and for RET-mutant medullary thyroid cancer; pralsetinib for RET fusion lung cancer. | RET | 3 | Non-small-cell lung cancer, Thyroid cancer, Medullary thyroid cancer | Selpercatinib, Pralsetinib, Oncomine Dx Target Test | |
BCR::ABL1 T315I BCR-ABL1 T315I is the gatekeeper mutation in the ABL1 kinase that defeats imatinib, dasatinib, nilotinib and bosutinib. Ponatinib and asciminib are the two drugs approved for it. | BCR-ABL1 | 2 | Chronic myeloid leukaemia, Chronic myeloid leukaemia, chronic phase, Chronic myeloid leukaemia, accelerated and blast phase | Ponatinib, Asciminib | |
BCR::ABL1 transcript (Philadelphia chromosome, quantitative PCR) BCR-ABL1 The BCR::ABL1 fusion is the Philadelphia chromosome that defines chronic myeloid leukaemia and some acute lymphoblastic leukaemia. Its transcript level in blood, on the international scale, is how response to tyrosine kinase inhibitors is measured and when treatment can be stopped. | BCR-ABL1 | 2 | Chronic myeloid leukaemia, Chronic myeloid leukaemia, chronic phase, Chronic myeloid leukaemia, accelerated and blast phase | Imatinib, Dasatinib, Nilotinib | |
EGFR L858R EGFR L858R is a single letter change in exon 21 of EGFR that keeps the kinase active. It is the second commonest sensitising mutation and shares every EGFR inhibitor label with the exon 19 deletion. | EGFR | 2 | Non-small-cell lung cancer | Osimertinib, Erlotinib, Gefitinib | |
ESR1 mutation (ligand-binding domain, usually in ctDNA) ESR1 ESR1 mutations arise in the oestrogen receptor's ligand-binding domain after aromatase inhibitor treatment, letting the receptor work without oestrogen. They are usually found in a blood test and select the oral SERDs elacestrant and imlunestrant. | ESR1 | 2 | HR-positive / HER2-negative breast cancer, HR-positive metastatic breast cancer after CDK4/6 inhibitors | Elacestrant, Imlunestrant, Camizestrant | |
FGFR2 fusion or rearrangement FGFR2 FGFR2 fusions occur in 10 to 15 percent of intrahepatic bile duct cancers and almost nowhere else. Pemigatinib and futibatinib are approved for them after a first chemotherapy. | FGFR2 | 2 | Biliary tract cancer, Intrahepatic cholangiocarcinoma, Biliary tract cancer | Pemigatinib, Futibatinib, Infigratinib | |
FLT3-TKD (D835 and I836 tyrosine kinase domain mutations) FLT3 FLT3-TKD mutations are point changes in the kinase's activation loop, found in about 7 percent of acute myeloid leukaemias. Midostaurin and gilteritinib labels cover them; quizartinib's does not. | FLT3 | 2 | Acute myeloid leukaemia, FLT3-mutated acute myeloid leukaemia | Midostaurin, Gilteritinib, Quizartinib | |
HER2 (ERBB2) activating mutation ERBB2 A HER2 mutation is a change in the gene's kinase domain, most often an exon 20 insertion, found in about 2 to 3 percent of lung adenocarcinomas. It is a different thing from HER2 amplification or overexpression, and it selects trastuzumab deruxtecan and, since 2025, zongertinib in lung cancer. | ERBB2 | 2 | Non-small-cell lung cancer, Gallbladder cancer | Trastuzumab deruxtecan, Zongertinib, Oncomine Dx Target Test | |
HER2 IHC 2+ (equivocal, reflex to ISH) ERBB2 IHC 2+ is the in-between HER2 result: moderate staining that cannot be called positive or negative by eye, so the laboratory runs an ISH gene test. 2+ with amplification is HER2-positive; 2+ without it is HER2-low. | ERBB2 | 2 | Breast cancer, HER2-low and HER2-ultralow metastatic breast cancer, HER2-positive gastric cancer | Trastuzumab deruxtecan, Trastuzumab, HER2 IHC and ISH companion assays | |
HLA-A*02:01 (HLA typing for TCR therapies) HLA-A HLA-A*02:01 is the commonest tissue-type molecule in people of European descent and the one the first T-cell receptor therapies were built for. Tebentafusp and afamitresgene autoleucel work only in patients who carry it, so a blood HLA test comes before the tumour test. | HLA-A | 2 | Uveal melanoma, Synovial sarcoma, Melanoma | Tebentafusp, Afamitresgene autoleucel | |
HRD-positive (genomic instability score) BRCA1, BRCA2 HRD-positive means the tumour's genome carries the scars of failed double-strand break repair (or a BRCA mutation), measured as a genomic instability score. In ovarian cancer it selects niraparib, and olaparib with bevacizumab, as first-line maintenance. | BRCA1, BRCA2 | 2 | Ovarian cancer, High-grade serous ovarian cancer, Triple-negative breast cancer | Niraparib, Olaparib, Bevacizumab | |
IDH2 mutation (R140 and R172) IDH1, IDH2 IDH2 mutations at codons 140 and 172 do the same job as IDH1 R132, producing 2-HG. Enasidenib is approved for relapsed AML with them, and vorasidenib for grade 2 gliomas with either IDH gene mutated. | IDH1, IDH2 | 2 | Acute myeloid leukaemia, IDH1- and IDH2-mutated acute myeloid leukaemia, Astrocytoma, IDH-mutant | Enasidenib, Vorasidenib | |
KRAS G12D (and other non-G12C KRAS mutations) KRAS G12D is the commonest KRAS mutation, especially in pancreatic cancer, and has no approved drug yet. In bowel cancer any KRAS or NRAS mutation is a reason not to give EGFR antibodies, which is where the approvals sit. | KRAS | 2 | Pancreatic ductal adenocarcinoma, Colorectal cancer, Non-small-cell lung cancer | Cetuximab, Panitumumab, therascreen companion diagnostic kits | |
MET exon 14 skipping mutation MET MET exon 14 skipping is a splice-site change that lets the MET receptor escape degradation and keep signalling. It is found in 3 to 4 percent of lung cancers and is treated with capmatinib or tepotinib. | MET | 2 | Non-small-cell lung cancer | Capmatinib, Tepotinib, Capmatinib & tepotinib | |
NPM1 mutation NPM1 NPM1 mutations, found in about a third of adult acute myeloid leukaemias, misplace the nucleophosmin protein into the cytoplasm. They mean a better outlook without FLT3-ITD, a sensitive MRD marker, and since 2025 a targeted menin inhibitor. | NPM1 | 2 | Acute myeloid leukaemia, NPM1-mutated and KMT2A-rearranged acute myeloid leukaemia | Ziftomenib, Revumenib | |
NTRK1/2/3 gene fusion NTRK1/2/3 An NTRK fusion joins one of three TRK kinase genes to a partner and drives cancers from infant fibrosarcoma to salivary and thyroid tumours, rare in common cancers but near-universal in a few rare ones. Larotrectinib, entrectinib and repotrectinib are approved for it regardless of tumour type. | NTRK1/2/3 | 2 | Metastatic cancer, Sarcomas, Thyroid cancer | Larotrectinib, Entrectinib, Repotrectinib | |
PSMA expression by PET (PSMA-positive) FOLH1 PSMA-positive means prostate cancer deposits light up on a PSMA PET scan more than the liver does. It is the entry ticket for lutetium-177 PSMA therapy and the basis of the imaging that now stages most advanced prostate cancer. | FOLH1 | 2 | Prostate cancer, Metastatic castration-resistant prostate cancer, Metastatic hormone-sensitive prostate cancer | Lutetium-177 vipivotide tetraxetan, Gallium-68 gozetotide, Locametz | |
PTEN alteration (sequencing) and PTEN loss (IHC) PTEN PTEN can be lost by mutation or deletion (read by sequencing) or as absent protein on a stain. Both readouts select capivasertib: alterations in breast cancer, and protein deficiency in metastatic hormone-sensitive prostate cancer. | PTEN | 2 | HR-positive / HER2-negative breast cancer, Metastatic hormone-sensitive prostate cancer, Prostate cancer | Capivasertib, Abiraterone acetate, FoundationOne CDx / Liquid CDx | |
RAS wild-type (extended KRAS and NRAS testing) KRAS RAS wild-type is the absence of a mutation, and it is the result that decides whether the EGFR antibodies cetuximab and panitumumab can be given in bowel cancer. Extended testing means KRAS and NRAS exons 2, 3 and 4, not just codons 12 and 13. | KRAS | 2 | Colorectal cancer, Rectal cancer, Colon cancer | Cetuximab, Panitumumab, Encorafenib | |
AKT1 E17K mutation AKT1/2/3 AKT1 E17K is a single hotspot mutation, in about 3 to 5 percent of hormone-receptor-positive breast cancers, that switches on the AKT kinase directly. It is one of the three alterations that qualify a patient for capivasertib. | AKT1/2/3 | 1 | HR-positive / HER2-negative breast cancer, Endometrial cancer, Triple-negative breast cancer | Capivasertib, FoundationOne CDx / Liquid CDx | |
BRAF fusion or rearrangement BRAF A BRAF fusion joins another gene to the BRAF kinase, most often KIAA1549 in paediatric low-grade glioma. Tovorafenib is approved for children whose relapsed low-grade glioma carries a BRAF fusion or V600 mutation. | BRAF | 1 | Paediatric low-grade glioma, Melanoma | Tovorafenib, FoundationOne CDx / Liquid CDx | |
c-Met protein overexpression (IHC 3+ in >= 50% of tumour cells) MET c-Met overexpression is a stain, not a gene change: strong (3+) membrane staining in at least half of tumour cells. It selects telisotuzumab vedotin, an antibody-drug conjugate, in previously treated non-squamous lung cancer. | MET | 1 | Non-small-cell lung cancer | Telisotuzumab vedotin, Telisotuzumab adizutecan | |
CD19 expression (CD19-positive) CD19 CD19 is the B-cell surface protein that blinatumomab, CAR-T cells and several antibodies aim at. Blinatumomab's label requires CD19-positive leukaemia; the CAR-T labels assume it, and losing CD19 is the commonest way the disease escapes. | CD19 | 1 | Acute lymphoblastic leukaemia, Relapsed and refractory acute lymphoblastic leukaemia in children, Diffuse large B-cell lymphoma | Blinatumomab, Tisagenlecleucel, Axicabtagene ciloleucel | |
CD20 expression (CD20-positive) MS4A1 CD20 is the B-cell antigen rituximab made famous. Rituximab and obinutuzumab labels are written for CD20-positive lymphoma and leukaemia; the newer CD20 x CD3 bispecifics assume it. | MS4A1 | 1 | Non-Hodgkin lymphoma, Diffuse large B-cell lymphoma, Follicular lymphoma | Rituximab, Obinutuzumab, Mosunetuzumab | |
CD22 expression (CD22-positive) CD22 CD22 is a second B-cell antigen, kept even when CD19 is lost. Inotuzumab ozogamicin is labelled for CD22-positive acute lymphoblastic leukaemia. | CD22 | 1 | Acute lymphoblastic leukaemia, Relapsed and refractory acute lymphoblastic leukaemia in children, Non-Hodgkin lymphoma | Inotuzumab ozogamicin | |
CD30 expression (CD30-positive) TNFRSF8 CD30 is the antigen of Hodgkin Reed-Sternberg cells and anaplastic large cell lymphoma. Brentuximab vedotin is labelled for Hodgkin lymphoma without a CD30 test and for peripheral T-cell lymphomas that express it. | TNFRSF8 | 1 | Hodgkin lymphoma, Peripheral T-cell lymphomas, Cutaneous T-cell lymphoma | Brentuximab vedotin | |
CD33 expression (CD33-positive) CD33 CD33 is a myeloid antigen on the blasts of about 90 percent of acute myeloid leukaemias. Gemtuzumab ozogamicin's label requires CD33-positive disease. | CD33 | 1 | Acute myeloid leukaemia, Acute myeloid leukaemia in children | Gemtuzumab ozogamicin | |
Claudin 18.2 expression (>= 75% of tumour cells, moderate to strong) CLDN18 Claudin 18.2 is a tight-junction protein exposed on stomach cancer cells. Zolbetuximab requires at least 75 percent of tumour cells to stain moderately or strongly, the strictest expression threshold in any current label. | CLDN18 | 1 | Gastric & gastro-oesophageal junction cancer, Claudin 18.2-positive gastric cancer, Pancreatic ductal adenocarcinoma | Zolbetuximab | |
ctDNA MRD positivity (molecular residual disease after curative treatment) Genome-wide readout A ctDNA MRD test looks for the tumour's own mutations in blood after surgery. Detection predicts relapse months before scans, and in 2026 the FDA approved Signatera as the companion test selecting bladder cancer patients for adjuvant atezolizumab. | 1 | Bladder & urothelial cancer, Colorectal cancer, Triple-negative breast cancer | Atezolizumab, Signatera, Guardant Reveal | ||
EGFR exon 20 insertion EGFR Exon 20 insertions add amino acids after the C-helix of EGFR and make the kinase resistant to the usual EGFR tablets. They account for about a tenth of EGFR mutations and have their own drugs: amivantamab with chemotherapy and sunvozertinib. | EGFR | 1 | Non-small-cell lung cancer | Amivantamab, Sunvozertinib, Mobocertinib | |
EGFR T790M EGFR T790M is the gatekeeper mutation that lung cancers acquire to escape first- and second-generation EGFR inhibitors. Finding it, in tissue or blood, is the historic gate for osimertinib after an earlier EGFR drug. | EGFR | 1 | Non-small-cell lung cancer | Osimertinib, cobas EGFR Mutation Test v2 | |
FGFR3 alteration (mutation or fusion) FGFR3 FGFR3 point mutations and TACC3 fusions drive about 15 to 20 percent of advanced bladder cancers. Erdafitinib is approved for tumours with these 'susceptible' alterations after one prior treatment. | FGFR3 | 1 | Bladder & urothelial cancer | Erdafitinib, therascreen companion diagnostic kits | |
Folate receptor alpha expression (FRα-positive, PS2+ >= 75%) FOLR1 Folate receptor alpha is a surface protein on most high-grade serous ovarian cancers. Mirvetuximab soravtansine requires FRα-positive disease, scored as at least 75 percent of cells with moderate or strong staining on the Ventana FOLR1 assay. | FOLR1 | 1 | Ovarian cancer, Platinum-resistant ovarian cancer, High-grade serous ovarian cancer | Mirvetuximab soravtansine | |
H3 K27M mutation H3-3A H3 K27M is a single change in a histone that defines diffuse midline glioma, including the brain-stem tumour DIPG. In 2025 dordaviprone became the first drug approved for tumours carrying it. | H3-3A | 1 | Diffuse midline glioma, H3 K27-altered, Paediatric high-grade glioma | Dordaviprone | |
HER2 IHC 0 (HER2-negative, including ultralow) ERBB2 IHC 0 is no HER2 staining, or faint staining in 10 percent or fewer cells. It is HER2-negative, but the label now separates true zero from 'IHC 0 with membrane staining', the ultralow group that trastuzumab deruxtecan can treat in hormone-receptor-positive breast cancer. | ERBB2 | 1 | Breast cancer, HER2-low and HER2-ultralow metastatic breast cancer, HR-positive / HER2-negative breast cancer | Trastuzumab deruxtecan, HER2 IHC and ISH companion assays | |
HER2 IHC 1+ ERBB2 IHC 1+ is faint, incomplete HER2 staining. It was called HER2-negative for twenty years; since 2022 it is the larger half of HER2-low, which trastuzumab deruxtecan treats in breast cancer. | ERBB2 | 1 | Breast cancer, HER2-low and HER2-ultralow metastatic breast cancer, HR-positive / HER2-negative breast cancer | Trastuzumab deruxtecan, HER2 IHC and ISH companion assays | |
HER2-low (IHC 1+ or IHC 2+/ISH-negative) ERBB2 HER2-low is not a new stain but a new reading of the old one: 1+ or 2+ without gene amplification. It covers about half of breast cancers and makes them eligible for trastuzumab deruxtecan. | ERBB2 | 1 | HER2-low and HER2-ultralow metastatic breast cancer, HR-positive / HER2-negative breast cancer, Metastatic triple-negative breast cancer | Trastuzumab deruxtecan, HER2 IHC and ISH companion assays | |
HER2-ultralow (IHC 0 with membrane staining) ERBB2 HER2-ultralow is an IHC 0 result with a trace of membrane staining in a few cells. Since 2025, in hormone-receptor-positive breast cancer that has stopped responding to hormone therapy, it is enough for trastuzumab deruxtecan. | ERBB2 | 1 | HER2-low and HER2-ultralow metastatic breast cancer, HR-positive / HER2-negative breast cancer, Triple-negative breast cancer | Trastuzumab deruxtecan, HER2 IHC and ISH companion assays | |
KIT D816V KIT KIT D816V is the mutation behind almost every case of systemic mastocytosis. It makes the disease resistant to imatinib, and it is detected by a highly sensitive blood PCR; avapritinib treats the disease whether or not the mutation is confirmed. | KIT | 1 | Systemic mastocytosis, Acute myeloid leukaemia, Gastrointestinal stromal tumour | Imatinib, Avapritinib | |
PD-L1 IC score (immune-cell score, SP142) CD274 The IC score measures how much of the tumour area is covered by PD-L1-stained immune cells rather than tumour cells. It belongs to the SP142 assay used with atezolizumab and is read differently from every other PD-L1 score. | CD274 | 1 | Non-small-cell lung cancer, Bladder & urothelial cancer, Metastatic triple-negative breast cancer | Atezolizumab, VENTANA PD-L1 (SP142) Assay | |
PDGFRA exon 18 mutation (D842V) PDGFRA PDGFRA D842V drives about 5 percent of gastrointestinal stromal tumours and is resistant to imatinib. Avapritinib is the approved drug for GISTs with PDGFRA exon 18 mutations including D842V. | PDGFRA | 1 | Gastrointestinal stromal tumour, PDGFRA D842V-mutant GIST | Avapritinib, Imatinib, therascreen companion diagnostic kits | |
PR status (progesterone receptor by IHC) PGR PR status is read the same way as ER: 1 percent or more of nuclei staining is positive. It is measured alongside ER, adds to prognosis, and a tumour positive for either receptor counts as hormone-receptor-positive. | PGR | 1 | HR-positive / HER2-negative breast cancer, Breast cancer, Endometrial cancer | Tamoxifen, Letrozole, Fulvestrant | |
Somatostatin receptor expression by PET (SSTR-positive) SSTR2 Somatostatin receptor-positive means a neuroendocrine tumour takes up a DOTATATE tracer on PET. It is the requirement for lutetium-177 dotatate and the marker that predicts response to octreotide and lanreotide. | SSTR2 | 1 | Neuroendocrine tumours, Pancreatic neuroendocrine tumours, Lung neuroendocrine tumours | Lutetium-177 dotatate, Gallium-68 DOTATATE, Actinium-225 DOTATATE | |
TMB-high (tumour mutational burden >= 10 mutations per megabase) Genome-wide readout TMB counts how many mutations a tumour carries per million DNA letters. Ten or more, measured by FoundationOne CDx, allows pembrolizumab for almost any solid tumour after other treatment has failed. | 1 | Metastatic cancer, Non-small-cell lung cancer, Melanoma | Pembrolizumab, FoundationOne CDx / Liquid CDx | ||
1p/19q codeletion Genome-wide readout Loss of one copy each of chromosome arms 1p and 19q, together with an IDH mutation, defines oligodendroglioma in the WHO 2021 classification. It predicts a slower course and a good response to chemotherapy, and separates oligodendroglioma from astrocytoma. | 0 | Oligodendroglioma, IDH-mutant and 1p/19q-codeleted, Glioma & glioblastoma, Astrocytoma, IDH-mutant | Vorasidenib, Temozolomide | ||
9p24.1 alteration of the PD-1 ligand loci Genome-wide readout An extra stretch of chromosome 9 that carries both of the molecules a tumour uses to switch off T cells, plus the enzyme that turns them up further. Nearly every classical Hodgkin lymphoma has it, which is why checkpoint drugs work so well there and so poorly in most other lymphomas. | 0 | Hodgkin lymphoma, Primary mediastinal (thymic) large B-cell lymphoma | Nivolumab, Pembrolizumab | ||
ALK kinase-domain resistance mutation (G1202R and the rest) ALK After a lung cancer stops responding to an ALK-blocking tablet, finding a change inside the ALK protein itself is good news: it means the cancer still depends on ALK, and a later-generation tablet is likely to work. Finding none means the opposite. | ALK | 0 | Non-small-cell lung cancer | none | |
AR amplification (gene and upstream enhancer) AR Extra copies of the gene for the androgen receptor. It is almost never present before hormone treatment and is found in about half of prostate cancers that have become resistant to it, which is why the stage the sample was taken at matters more than the result itself. | AR | 0 | Prostate cancer, Metastatic castration-resistant prostate cancer, Metastatic hormone-sensitive prostate cancer | none | |
AR ligand-binding-domain mutation (L702H, W742C, H875Y, T878A, F877L) AR A change in the part of the androgen receptor that hormone drugs attach to. Depending on which change it is, another hormone the man is already taking can switch the receptor on, or the blocking drug can start behaving as an activating one. | AR | 0 | Prostate cancer, Metastatic castration-resistant prostate cancer | none | |
AR-V7 splice variant AR AR-V7 is a shortened androgen receptor that lacks the part hormone drugs bind, so it stays active without testosterone. Found in circulating tumour cells, it predicts poor response to abiraterone and enzalutamide, but no label uses it yet. | AR | 0 | Metastatic castration-resistant prostate cancer, Prostate cancer | Abiraterone acetate, Enzalutamide | |
B7-H3 (CD276) expression CD276 B7-H3 is an immune checkpoint protein overexpressed on small-cell lung, prostate and many solid tumours. Ifinatamab deruxtecan is in phase 3 for small-cell lung cancer without an expression cut-off; nothing is approved. | CD276 | 0 | Small-cell lung cancer, Extensive-stage small-cell lung cancer, Metastatic castration-resistant prostate cancer | Ifinatamab deruxtecan | |
BCL2 G101V and the other venetoclax binding-site mutations BCL2 A change in the pocket of the survival protein BCL-2 where venetoclax has to fit. The protein still works and the drug no longer binds it. It can be detected in blood months before the disease starts growing again. | BCL2 | 0 | Non-Hodgkin lymphoma, Mantle cell lymphoma | Venetoclax, Sonrotoclax | |
BCL2 rearrangement, t(14;18) BCL2 A swap of DNA that puts the survival gene BCL2 next to an antibody gene, so the cell makes far too much of a protein that stops it dying. It is the founding event of most follicular lymphomas and it happens in the bone marrow, often years before anything is wrong. | BCL2 | 0 | Follicular lymphoma, Diffuse large B-cell lymphoma, Non-Hodgkin lymphoma | Venetoclax | |
BCMA expression TNFRSF17 BCMA is the plasma-cell antigen behind the myeloma bispecifics and CAR-T cells. None of their labels requires a BCMA test; expression is near-universal, and loss through BCMA gene deletion is a documented escape route. | TNFRSF17 | 0 | Multiple myeloma, Relapsed or refractory multiple myeloma | Teclistamab, Elranatamab, Linvoseltamab | |
BRAF class II and class III mutations (non-V600) BRAF Class II and III BRAF mutations sit outside codon 600 and signal as pairs (class II) or by leaning on RAS (class III). Approved BRAF inhibitors do not work on them, and no drug is yet approved for them; pan-RAF inhibitors are in trials. | BRAF | 0 | Melanoma, Non-small-cell lung cancer, Colorectal cancer | Tovorafenib, Trametinib | |
BTK resistance mutations: C481S, and L528W and T474I after the non-covalent inhibitors BTK A change in the enzyme BTK at the exact point where the drug grips it. The enzyme keeps working and the drug no longer holds, which is the usual reason a BTK inhibitor stops working after it has been working well. | BTK | 0 | Mantle cell lymphoma, Waldenström macroglobulinaemia, Non-Hodgkin lymphoma | Ibrutinib, Acalabrutinib, Zanubrutinib | |
CD38 expression CD38 CD38 is on almost every myeloma cell, so daratumumab and isatuximab are given without testing for it. The stain matters afterwards: CD38 falls after treatment and can confuse flow cytometry and blood typing. | CD38 | 0 | Multiple myeloma, Newly diagnosed multiple myeloma, transplant-eligible, Newly diagnosed multiple myeloma, transplant-ineligible | Daratumumab, Isatuximab | |
CD79B ITAM mutation CD79B A change in the signalling tail of part of the B-cell receptor that leaves the receptor switched on without needing anything to bind it. It marks a group of large B-cell lymphomas that depend on that signal, and therefore on the enzyme BTK. | CD79B | 0 | Diffuse large B-cell lymphoma, Primary CNS lymphoma, Non-Hodgkin lymphoma | Ibrutinib, Polatuzumab vedotin | |
CEACAM5 expression CEACAM5 CEACAM5 is the cell-surface form of the tumour marker CEA, high on many lung and bowel cancers. Tusamitamab ravtansine was tested in CEACAM5-high lung cancer but failed its phase 3 and no approval exists. | CEACAM5 | 0 | Non-small-cell lung cancer, Colorectal cancer | Tusamitamab ravtansine | |
Circulating tumour DNA fraction (and what a negative plasma result means) Genome-wide readout How much of the DNA floating in a blood sample came from the cancer. Above a few per cent, a plasma test finds what a biopsy would find; below it, a negative result means the test could not see, not that there is nothing there. | 0 | Prostate cancer, Metastatic castration-resistant prostate cancer | none | ||
DLL3 expression DLL3 DLL3 sits on the surface of about 85 percent of small-cell lung cancers and almost no normal adult tissue. Tarlatamab is given without a DLL3 test. | DLL3 | 0 | Small-cell lung cancer, Extensive-stage small-cell lung cancer, Neuroendocrine and small-cell prostate cancer | Tarlatamab | |
Double expressor: MYC and BCL2 protein together by immunohistochemistry MYC A stain showing that a lymphoma makes a lot of both the growth protein MYC and the survival protein BCL2, without the genes being rearranged. It predicts a worse course, but on its own it does not change the treatment. | MYC | 0 | Diffuse large B-cell lymphoma, Non-Hodgkin lymphoma | none | |
Double-hit and triple-hit: MYC with BCL2 and BCL6 rearrangement MYC A lymphoma that carries a rearrangement of MYC, the gene that drives growth, together with one of BCL2 or BCL6, the genes that stop a cell dying. Having both is far worse than having either, and it usually means a stronger treatment than standard R-CHOP. | MYC | 0 | Diffuse large B-cell lymphoma, Burkitt lymphoma, Non-Hodgkin lymphoma | none | |
EGFR C797S (and its phase with T790M) EGFR A change in the EGFR protein that removes the anchor point the newest lung cancer pills grip. Whether it can be worked around depends on whether it sits on the same copy of the gene as the earlier resistance change or on the other copy. | EGFR | 0 | Non-small-cell lung cancer | none | |
EZH2 gain-of-function mutation (Tyr646, originally Tyr641) EZH2 A change in an enzyme that puts a chemical silencing mark on DNA. The altered enzyme adds too much of the mark, which keeps a lymphoma cell locked in the state it should have grown out of. It is the one lymphoma mutation that currently selects a tablet. | EZH2 | 0 | Follicular lymphoma, Diffuse large B-cell lymphoma, Non-Hodgkin lymphoma | Tazemetostat | |
FcRH5 expression FCRL5 FcRH5 is a third myeloma surface target after BCMA and GPRC5D. Cevostamab, the FcRH5 x CD3 bispecific, is in phase 3; no approval or threshold exists yet. | FCRL5 | 0 | Multiple myeloma, Relapsed or refractory multiple myeloma | Cevostamab | |
GPRC5D expression GPRC5D GPRC5D is a receptor on myeloma cells and in hair follicles, nails and taste buds. Talquetamab targets it without any test, and the side effects on skin, nails and taste follow from where it is expressed. | GPRC5D | 0 | Multiple myeloma, Relapsed or refractory multiple myeloma | Talquetamab | |
HER3 expression ERBB3 HER3 is a signalling partner of EGFR and HER2 present on most lung and breast cancers. Patritumab deruxtecan was studied in EGFR-mutant lung cancer without a HER3 threshold, and no approval exists. | ERBB3 | 0 | Non-small-cell lung cancer, Breast cancer | Patritumab deruxtecan | |
Immunoglobulin and T-cell receptor clonality Genome-wide readout A test that asks whether a group of lymphocytes all descend from one cell. Cancer is one family; a normal immune response is a crowd. It is used when the appearance under the microscope does not settle the question. | 0 | Non-Hodgkin lymphoma, Cutaneous T-cell lymphoma, Sezary syndrome | none | ||
Ki-67 index (proliferation by IHC) MKI67 Ki-67 is the percentage of tumour cells that are dividing. In neuroendocrine tumours it sets the grade; in breast cancer a 20 percent cut-off was briefly a condition of adjuvant abemaciclib, then dropped from the label in 2023. | MKI67 | 0 | HR-positive / HER2-negative breast cancer, High-risk early HR-positive breast cancer, Neuroendocrine tumours | Abemaciclib | |
MET amplification (gene copy number) MET MET amplification means extra copies of the MET gene, either as a primary driver in a few lung cancers or as the escape route after EGFR inhibitors. No label yet selects on it; trials define it by FISH ratio or copy number. | MET | 0 | Non-small-cell lung cancer, Gastric & gastro-oesophageal junction cancer | Capmatinib, Tepotinib, Amivantamab | |
MGMT promoter methylation MGMT Methylation of the MGMT promoter switches off the repair enzyme that undoes temozolomide's damage. Methylated glioblastomas live longer on temozolomide; unmethylated ones gain little, and trials now use the result to spare or intensify chemotherapy. | MGMT | 0 | Glioma & glioblastoma, Astrocytoma, IDH-mutant | Temozolomide | |
MYCN amplification MYCN MYCN amplification, more than four times the normal copy number of the gene on FISH, marks the most aggressive fifth of neuroblastomas and puts a child in the high-risk group whatever their age or stage. No drug targets it; it decides how much treatment is given. | MYCN | 0 | Neuroblastoma, High-risk neuroblastoma, Intermediate-risk neuroblastoma | Dinutuximab (ch14.18) / dinutuximab beta | |
Nectin-4 expression NECTIN4 Nectin-4 is expressed by almost every urothelial cancer, so enfortumab vedotin is given without a test. Nectin-4 amplification is being studied as a marker of especially strong response. | NECTIN4 | 0 | Bladder & urothelial cancer | Enfortumab vedotin | |
RHOA G17V RHOA A single change in a small signalling protein, found in about two thirds of one kind of T-cell lymphoma. It is useful because it is specific to the tumour cells, while the other mutations in the same disease are also present in normal blood cells. | RHOA | 0 | Nodal T-follicular helper cell lymphoma, angioimmunoblastic type, Peripheral T-cell lymphomas, Non-Hodgkin lymphoma | Azacitidine, Romidepsin | |
SPOP mutation SPOP The commonest single point mutation in prostate cancer, in about one tumour in eight. Tumours carrying it never have the usual ERG fusion, and men whose metastatic disease carries it tend to stay hormone-sensitive for longer. | SPOP | 0 | Prostate cancer, Metastatic hormone-sensitive prostate cancer | none | |
STK11 or KEAP1 loss in KRAS-mutant lung adenocarcinoma STK11 Two genes that, when broken in a lung cancer that also has a faulty KRAS gene, predict that immunotherapy will work much less well. In a lung cancer with a normal KRAS gene the same faults appear to make no difference. | STK11 | 0 | Non-small-cell lung cancer | none | |
Tissue factor expression F3 Tissue factor, the clotting trigger, is overexpressed on cervical and several other cancers. Tisotumab vedotin is labelled for cervical cancer without a tissue factor test. | F3 | 0 | Cervical cancer, Recurrent or metastatic cervical cancer | Tisotumab vedotin | |
TMPRSS2-ERG fusion (and the other ETS rearrangements) ERG The commonest genetic change in prostate cancer, present in roughly half of tumours. Nothing treats it and it does not make the cancer more dangerous; it is useful mainly for recognising that two samples came from the same tumour. | ERG | 0 | Prostate cancer | none | |
TP53 mutation and del(17p) TP53 TP53 mutation, or deletion of the 17p arm that carries the gene, is the single most common change in cancer and carries a worse outlook almost everywhere. In chronic lymphocytic leukaemia it decides treatment: chemotherapy is avoided and venetoclax's first approval was for del(17p) disease. | TP53 | 0 | Chronic lymphocytic leukaemia, Relapsed or refractory chronic lymphocytic leukaemia, Acute myeloid leukaemia | Venetoclax |