HNRNPL Circularizes ARHGAP35 to Produce an Oncogenic Protein

Yan Li(Shanghai Medical College of Fudan University), Bing Chen(Shanghai Medical College of Fudan University), Jingjing Zhao(Shanghai Medical College of Fudan University), Qin Li(Shanghai Medical College of Fudan University), Siyuan Chen(Fudan University Shanghai Cancer Center), Tianan Guo(Fudan University Shanghai Cancer Center), Yuchen Li(Shanghai Medical College of Fudan University), Hongyan Lai(Shanghai Medical College of Fudan University), Zhiao Chen(Fudan University Shanghai Cancer Center), Zhiqiang Meng(Shanghai Medical College of Fudan University), Weijie Guo(Fudan University Shanghai Cancer Center), Xianghuo He(Fudan University Shanghai Cancer Center), Shenglin Huang(Shanghai Medical College of Fudan University)
Advanced Science
May 1, 2021
Cited by 160Open Access
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Abstract

Abstract Circular RNAs (circRNAs) are an intriguing class of widely prevalent endogenous RNAs, the vast majority of which have not been characterized functionally. Here, we identified a novel oncogenic circRNA originating from the back‐splicing of Exon2 and Exon3 of a tumor suppressor gene, ARHGAP35 (also known as P190‐A), termed as circARHGAP35. have observe that circARHGAP35 and linear ARHGAP35 have antithetical expression and functions. Interestingly, circARHGAP35 contains a 3867 nt long ORF with an m 6 A‐modified start codon and encodes a truncated protein comprising four FF domains and lacking the Rho GAP domain. Mechanistically, circARHGAP35 protein promotes cancer cell progression by interacting with TFII‐I protein in the nucleus. The RNA binding protein, HNRNPL, facilitates the formation of circARHGAP35. Clinically, circARHGAP35 is associated with poor survival in cancer patients. Our findings characterize an oncogenic circRNA and demonstrate a novel mechanism of oncogene activation in cancer by circRNA through the production of a truncated protein.


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