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Hematopoietic-specific heterozygous loss of Dnmt3a exacerbates colitis-associated colon cancer

Feng, Y.; Newsome, R. C.; Robinson, T.; Bowman, R. L.; Zuniga, A. N.; Hall, K. N.; Berntsen, C. M.; Shabashvili, D. E.; Krajcik, K. I.; Gunaratne, C.; Zaroogian, Z. J.; Venugopal, K.; Casellas Roman, H. L.; Levine, R. L.; Chatila, W. K.; Yaeger, R.; Riva, A.; Kopinke, D.; Jobin, C.; Avram, D.; Guryanova, O. A.

2022-12-31 cancer biology
10.1101/2022.12.30.522355 bioRxiv
Show abstract

Clonal hematopoiesis (CH) is defined as clonal expansion of mutant hematopoietic stem cells absent diagnosis of a hematologic malignancy. Presence of CH in solid tumor patients, including colon cancer, correlates with shorter survival. We hypothesized that bone marrow-derived cells with heterozygous loss-of-function mutations of DNMT3A, the most common genetic alteration in CH, contribute to the pathogenesis of colon cancer. In a mouse model that combines colitis-associated colon cancer with experimental CH driven by Dnmt3a+/{Delta}, we found higher tumor penetrance and increased tumor burden compared to controls. Histopathological analysis revealed accentuated colonic epithelium injury, dysplasia and adenocarcinoma formation. Transcriptome profiling of colon tumors identified enrichment of gene signatures associated with carcinogenesis, including angiogenesis. Treatment with the angiogenesis inhibitor axitinib eliminated the colon tumor-promoting effect of experimental CH driven by Dnmt3a haploinsufficiency. This study provides conceptually novel insights into non-tumor-cell-autonomous effect of hematopoietic alterations on colon carcinogenesis and identifies potential therapeutic strategies. SUMMARYA pre-clinical mouse model demonstrates that genetic alterations in the blood system characteristic of clonal hematopoiesis (CH) contribute to an aggressive solid tumor phenotype. It further identifies cancer angiogenesis as a potential therapeutic target to mitigate adverse CH effects.

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