Genomic Amplification of TBC1D31 Promotes Hepatocellular Carcinoma Through Reducing the Rab22A‐Mediated Endolysosomal Trafficking and Degradation of EGFR

Author:

Cao Pengbo1ORCID,Chen Hongxia1,Zhang Ying2,Zhang Qi13,Shi Mengting4,Han Huihui1,Wang Xiaowen5,Jin Liang1,Guo Bingqian1,Hao Rongjiao6,Zhao Xi1,Li Yuanfeng1,Gao Chengming1,Liu Xinyi1,Wang Yahui1,Yang Aiqing1,Yang Chenning1,Si Anfeng7,Li Hua8,Song Qingfeng9,He Fuchu25,Zhou Gangqiao12346ORCID

Affiliation:

1. State Key Laboratory of Medical Proteomics National Center for Protein Sciences at Beijing Beijing Institute of Radiation Medicine Beijing 100850 China

2. School of Life Sciences Tsinghua University Beijing 100084 China

3. University of South China Hengyang 421001 China

4. Guangxi Medical University Nanning 530021 China

5. State Key Laboratory of Medical Proteomics National Center for Protein Sciences at Beijing Beijing Institute of Lifeomics Beijing 102206 China

6. Hebei University Baoding 071000 China

7. Jinling Hospital Affiliated Hospital of Medical School Nanjing University Nanjing 210002 China

8. Department of Oncology Chengdu Military General Hospital Chengdu 610083 China

9. Affiliated Cancer Hospital of Guangxi Medical University Nanning 530021 China

Abstract

AbstractHepatocellular carcinomas (HCCs) are characterized by a vast spectrum of somatic copy number alterations (CNAs); however, their functional relevance is largely unknown. By performing a genome‐wide survey on prognosis‐associated focal CNAs in 814 HCC patients by an integrative computational framework based on transcriptomic data, genomic amplification is identified at 8q24.13 as a promising candidate. Further evidence is provided that the 8q24.13 amplification‐driven overexpression of Rab GTPase activating protein TBC1D31 exacerbates HCC growth and metastasis both in vitro and in vivo through activating Epidermal growth factor receptor (EGFR) signaling. Mechanistically, TBC1D31 acts as a Rab GTPase activating protein to catalyze GTP hydrolysis for Rab22A and then reduces the Rab22A‐mediated endolysosomal trafficking and degradation of EGFR. Notably, overexpression of TBC1D31 markedly increases the resistance of HCC cells to lenvatinib, whereas inhibition of the TBC1D31‐EGFR axis can reverse this resistance phenotype. This study highlights that TBC1D31 at 8q24.13 is a new critical oncogene, uncovers a novel mechanism of EGFR activation in HCC, and proposes the potential strategies for treating HCC patients with TBC1D31 amplification or overexpression.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

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