Oncogenic splicing abnormalities induced by <i><scp>DEAD</scp></i><i>‐Box Helicase 56</i> amplification in colorectal cancer

Yuta Kouyama(Showa University Northern Yokohama Hospital), Takaaki Masuda(Kyushu University Beppu Hospital), Atsushi Fujii(Kyushu University Beppu Hospital), Yushi Ogawa(Showa University Northern Yokohama Hospital), Kuniaki Sato(Kyushu University Beppu Hospital), Taro Tobo(Kyushu University Beppu Hospital), Hiroaki Wakiyama(Kyushu University Beppu Hospital), Yukihiro Yoshikawa(Kyushu University Beppu Hospital), Miwa Noda(Kyushu University Beppu Hospital), Yusuke Tsuruda(Kyushu University Beppu Hospital), Yousuke Kuroda(Kyushu University Beppu Hospital), Hidetoshi Eguchi(Kyushu University Beppu Hospital), Fumio Ishida(Showa University Northern Yokohama Hospital), Shin‐ei Kudo(Showa University Northern Yokohama Hospital), Koshi Mimori(Kyushu University Beppu Hospital)
Cancer Science
August 7, 2019
Cited by 59Open Access
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Abstract

Alternative splicing, regulated by DEAD-Box Helicase (DDX) families, plays an important role in cancer. However, the relationship between the DDX family and cancer has not been fully elucidated. In the present study, we identified a candidate oncogene DDX56 on Ch.7p by a bioinformatics approach using The Cancer Genome Atlas (TCGA) dataset of colorectal cancer (CRC). DDX56 expression was measured by RT-qPCR and immunochemical staining in 108 CRC patients. Clinicopathological and survival analyses were carried out using three CRC datasets. Biological roles of DDX56 were explored by gene set enrichment analysis (GSEA), and cell proliferation in vitro and in vivo, cell cycle assays, and using DDX56-knockdown or overexpressed CRC cells. RNA sequencing was carried out to elucidate the effect of DDX56 on mRNA splicing. We found that DDX56 expression was positively correlated with the amplification of DDX56 and was upregulated in CRC cells. High DDX56 expression was associated with lymphatic invasion and distant metastasis and was an independent poor prognostic factor. In vitro analysis, in vivo analysis and GSEA showed that DDX56 promoted proliferation ability through regulating the cell cycle. DDX56 knockdown reduced intron retention and tumor suppressor WEE1 expression, which functions as a G2-M DNA damage checkpoint. We have identified DDX56 as a novel oncogene and prognostic biomarker of CRC that promotes alternative splicing of WEE1.


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