Genetic compensation response could exist in colorectal cancer: UPF3A upregulates the oncogenic homologue gene SRSF3 expression corresponding to SRSF6 to promote colorectal cancer metastasis

Author:

Xu Weimin1,Ou Weijun1,Feng Yuan2,Xu Qingru2,Yang Yili3,Cui Long1,Du Peng1ORCID

Affiliation:

1. Department of Colorectal Surgery, Xinhua Hospital Shanghai Jiaotong University, School of Medicine Shanghai 200092 China

2. Suzhou Institute of Systems Medicine Chinese Academy of Medical Sciences Suzhou Jiangsu 215123 China

3. International Center for Genetic Engineering and Biotechnology China Regional Research Center Taizhou Medical City Jiangsu 225316 China

Abstract

AbstractBackgroundGenetic compensation response (GCR) is a mechanism that maintains the robustness of functional genes, which has been recently identified. Whether GCR exists in tumors and its effects on tumor progression remains unknown.MethodsWhole exome sequencing was performed to identify premature termination codon (PTC) gene mutations in colorectal cancer (CRC) tissues. RNA sequencing, Cancer Cell Line Encyclopedia database analysis, and high‐throughput output of homologous genes using the Ensemble genome database were performed to further identify homologous genes of target PTC gene mutations.ResultsSerine and arginine‐rich splicing factor 3 (SRSF3) increased the invasion ability in CRC cells and could be the target gene of up‐frameshift 3A (UPF3A). The deletion of the 660th base A in the coding sequence region of SRSF6 caused a frameshift mutation of serine at position 220 (s220fs), which contributed to a PTC UAA termination of translation in HCT116 cells. We further found that SRSF3 was the only homologue of SRSF6 with a frameshift mutation. The transfection of s220fs of SRSF6 into HCT116 cells led to upregulation of its corresponding oncogenic homologue gene SRSF3 expression to promote CRC metastasis. SRSF3 was highly expressed in CRC liver metastases and was positively correlated with UPF3A expression and contributed to poor prognosis.ConclusionGCR may exist in CRC and exert effects on the progression of CRC. Targeted inhibition of UPF3A could reduce the GCR effects and suppress the expression of oncogenic homologue genes corresponding to PTC mutations, indicating a novel therapeutic strategy for treatment of CRC metastasis.

Funder

Natural Science Foundation of Shanghai

National Natural Science Foundation of China

Publisher

Wiley

Subject

Gastroenterology,Hepatology

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