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Biology subjects

Fey, S. K.

Publications and source records attributed to Fey, S. K..

2 recordsLinked to original sources

KRAS allelic imbalance drives tumour initiation yet suppresses metastasis in colorectal cancer in vivo

Oncogenic KRAS mutations are well-described functionally and are known to drive tumorigenesis. Recent reports describe a significant prevalence of KRAS allelic imbalances or gene dosage changes in human cancers, including loss of the wild-type allele in KRAS mutant cancers. However, there is still much debate over the function of wild-type KRAS in tumour initiation, progression and therapeutic response. We have developed a genetically engineered mouse model which allows deletion of the wild-type copy of Kras in the context of an intact oncogenic Kras in colorectal cancer. We observe that in the presence of oncogenic Kras, wild-type Kras acts to restrain tumour growth. Mechanistically, deletion of wild-type Kras exacerbates oncogenic KRAS signalling through MAPK and thus drives tumour initiation. Absence of wild-type Kras potentiates the oncogenic effect of KRASG12D, while presence of wild-type Kras is associated with resistance to inhibition of MEK1/2 in KRASG12D driven tumours. Importantly, loss of wild-type Kras in oncogenic KRAS-driven aggressive tumours significantly alters tumour progression, metastasis while impacting tumour immune cell infiltration. This study demonstrates a suppressive role for wild-type Kras during colon tumour initiation and highlights the critical impact of wild-type Kras upon therapeutic response to MAPK and tumour progression in Kras mutant cancers. HighlightsO_LIWild-type KRAS suppresses mutant KRASG12D mediated proliferation and signalling in colorectal cancer models in vivo C_LIO_LIConcomitant loss of wild-type KRAS and activation of WNT signalling promotes mutant KRAS-driven tumour initiation. C_LIO_LIWild-type KRAS promotes resistance to MAPK inhibition in KRAS mutant tumours C_LIO_LILoss of wild-type KRAS inhibits metastasis of late-stage mutant KRAS colorectal cancer models. C_LI

cancer biology↗

Kras loss of heterozygosity promotes MAPK dependent pancreatic ductal adenocarcinoma and induces therapeutic sensitivity

Pancreatic cancer is characterised by the prevalence of oncogenic mutations in KRAS. Previous studies have reported that altered Kras gene dosage drives progression and metastatic incidence in pancreatic cancer. While the role of oncogenic KRAS mutation is well characterised, the relevance of the partnering wild-type KRAS allele in pancreatic cancer is less well understood and controversial. Using in vivo mouse modelling of pancreatic cancer, we demonstrate that wild-type Kras restrains the oncogenic impact of mutant Kras, and drastically impacts both Kras-mediated tumourigenesis and therapeutic response. Mechanistically, deletion of wild-type Kras increases oncogenic Kras signalling through the downstream MAPK effector pathway, driving pancreatic intraepithelial neoplasia (PanIN) initiation. In addition, in the KPC mouse model, a more aggressive model of pancreatic cancer, loss of wild-type KRAS leads to accelerated initiation but delayed tumour progression. These tumours had altered stroma, downregulated Myc levels and an enrichment for immunogenic gene signatures. Importantly, loss of wild-type Kras sensitises Kras mutant tumours to MEK1/2 inhibition though tumours eventually become resistant and then rapidly progress. This study demonstrates the repressive role of wild-type Kras during pancreatic tumourigenesis and highlights the critical impact of the presence of wild-type KRAS on tumourigenesis and therapeutic response in pancreatic cancer.

cancer biology↗