Literature DB >> 32580279

COX5B-Mediated Bioenergetic Alteration Regulates Tumor Growth and Migration by Modulating AMPK-UHMK1-ERK Cascade in Hepatoma.

Yu-De Chu1, Wey-Ran Lin1,2,3, Yang-Hsiang Lin1, Wen-Hsin Kuo1, Chin-Ju Tseng3, Siew-Na Lim3,4, Yen-Lin Huang5, Shih-Chiang Huang5, Ting-Jung Wu1, Kwang-Huei Lin1, Chau-Ting Yeh1,2,3,6.   

Abstract

The oxidative phosphorylation machinery in mitochondria, which generates the main bioenergy pool in cells, includes four enzyme complexes for electron transport and ATP synthase. Among them, the cytochrome c oxidase (COX), which constitutes the fourth complex, has been suggested as the major regulatory site. Recently, abnormalities in COX were linked to tumor progression in several cancers. However, it remains unclear whether COX and its subunits play a role in tumor progression of hepatoma. To search for the key regulatory factor(s) in COX for hepatoma development, in silico analysis using public transcriptomic database followed by validation for postoperative outcome associations using independent in-house patient cohorts was performed. In which, COX5B was highly expressed in hepatoma and associated with unfavorable postoperative prognosis. In addressing the role of COX5B in hepatoma, the loss- and gain-of-function experiments for COX5B were conducted. Consequently, COX5B expression was associated with increased hepatoma cell proliferation, migration and xenograft growth. Downstream effectors searched by cDNA microarray analysis identified UHMK1, an oncogenic protein, which manifested a positively correlated expression level of COX5B. The COX5B-mediated regulatory event on UHMK1 expression was subsequently demonstrated as bioenergetic alteration-dependent activation of AMPK in hepatoma cells. Phosphoproteomic analysis uncovered activation of ERK- and stathmin-mediated pathways downstream of UHMK1. Finally, comprehensive phenotypic assays supported the impacts of COX5B-UHMK1-ERK axis on hepatoma cell growth and migration.

Entities:  

Keywords:  U2 auxiliary factor homology motif kinase 1; bioenergy; cytochrome c oxidase; extracellular signal-regulated kinase; mitochondria

Year:  2020        PMID: 32580279     DOI: 10.3390/cancers12061646

Source DB:  PubMed          Journal:  Cancers (Basel)        ISSN: 2072-6694            Impact factor:   6.639


  5 in total

Review 1.  Multiple Mechanisms Regulate Eukaryotic Cytochrome C Oxidase.

Authors:  Rabia Ramzan; Bernhard Kadenbach; Sebastian Vogt
Journal:  Cells       Date:  2021-02-28       Impact factor: 6.600

2.  UHMK1 Is a Novel Marker for Personalized Prediction of Pancreatic Cancer Prognosis.

Authors:  Yiqiao Luo; Shanshan Han; Bin Yan; Huihui Ji; Lian Zhao; Jury Gladkich; Ingrid Herr
Journal:  Front Oncol       Date:  2022-03-10       Impact factor: 6.244

3.  UHMK1 aids colorectal cancer cell proliferation and chemoresistance through augmenting IL-6/STAT3 signaling.

Authors:  Xuedi Gao; Wenfang Bao; Jin Bai; Kailing Fan; Li Li; Yandong Li
Journal:  Cell Death Dis       Date:  2022-05-02       Impact factor: 9.685

4.  COX5B-Mediated Bioenergetic Alterations Modulate Cell Growth and Anticancer Drug Susceptibility by Orchestrating Claudin-2 Expression in Colorectal Cancers.

Authors:  Yu-De Chu; Siew-Na Lim; Chau-Ting Yeh; Wey-Ran Lin
Journal:  Biomedicines       Date:  2021-12-28

5.  SYNE1 Exonic Variant rs9479297 Contributes to Concurrent Hepatocellular and Transitional Cell Carcinoma Double Primary Cancer.

Authors:  Yu-De Chu; Kwong-Ming Kee; Wey-Ran Lin; Ming-Wei Lai; Sheng-Nan Lu; Wen-Hung Chung; See-Tong Pang; Chau-Ting Yeh
Journal:  Biomedicines       Date:  2021-12-02
  5 in total

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