GTPBP8 modulates mitochondrial fission through a Drp1-dependent process

Author:

He Xiumei1234ORCID,Wang Liang23ORCID,Tsang Hoi Ying5ORCID,Liu Xiaonan6ORCID,Yang Xiaofeng23ORCID,Pu Shiming14ORCID,Guo Ziqi14ORCID,Yang Cheng14ORCID,Wu Qiong14,Zhou Zuping14,Cen Xiaobo23ORCID,Zhao Hongxia145ORCID

Affiliation:

1. School of Life Sciences, Guangxi Normal University 1 , Guilin 541004 , China

2. Mental Health Center and National Chengdu Center for Safety Evaluation of Drugs 2 , State Key Laboratory of Biotherapy , , Chengdu 610041 , China

3. West China Hospital of Sichuan University 2 , State Key Laboratory of Biotherapy , , Chengdu 610041 , China

4. Guangxi Normal University 3 Guangxi Universities Key Laboratory of Stem Cell and Biopharmaceutical Technology , , Guilin 541004 , China

5. University of Helsinki 4 Faculty of Biological and Environmental Sciences , , 00014 Helsinki , Finland

6. Medical University of Silesia in Katowice 5 Department of Physiology, Faculty of Medical Sciences in Katowice , , Katowice 40752 , Poland

Abstract

ABSTRACT Mitochondrial fission is a tightly regulated process involving multiple proteins and cell signaling. Despite extensive studies on mitochondrial fission factors, our understanding of the regulatory mechanisms remains limited. This study shows the critical role of a mitochondrial GTPase, GTPBP8, in orchestrating mitochondrial fission in mammalian cells. Depletion of GTPBP8 resulted in drastic elongation and interconnectedness of mitochondria. Conversely, overexpression of GTPBP8 shifted mitochondrial morphology from tubular to fragmented. Notably, the induced mitochondrial fragmentation from GTPBP8 overexpression was inhibited in cells either depleted of the mitochondrial fission protein Drp1 (also known as DNM1L) or carrying mutated forms of Drp1. Importantly, downregulation of GTPBP8 caused an increase in oxidative stress, modulating cell signaling involved in the increased phosphorylation of Drp1 at Ser637. This phosphorylation hindered the recruitment of Drp1 to mitochondria, leading to mitochondrial fission defects. By contrast, GTPBP8 overexpression triggered enhanced recruitment and assembly of Drp1 at mitochondria. In summary, our study illuminates the cellular function of GTPBP8 as a pivotal modulator of the mitochondrial division apparatus, inherently reliant on its influence on Drp1.

Funder

Research Council of Finland

Jane and Aatos Erkko Foundation

Special Fund for Distinguished Experts in Guangxi of China

National Natural Science Foundation of China

Sichuan University

China Postdoctoral Science Foundation

Science and Technology Department of Sichuan Province

Publisher

The Company of Biologists

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1. First person – Xiumei He;Journal of Cell Science;2024-04-15

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