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ID 118892
Author
Akabane, Shiori Rikkyo University|Kyoto Sangyo University
Watanabe, Kiyona Rikkyo University
Yamashita, Shun-ichi Niigata University
Nishino, Kohei Tokushima University
Kato, Masahiro Rikkyo University
Sekine, Shiori University of Pittsburgh
Kanki, Tomotake Niigata University
Matsuda, Noriyuki Tokyo Medical and Dental University
Endo, Toshiya Kyoto Sangyo University
Oka, Toshihiko Rikkyo University
Content Type
Journal Article
Description
PINK1 is activated by autophosphorylation and forms a high-molecular-weight complex, thereby initiating the selective removal of damaged mitochondria by autophagy. Other than translocase of the outer mitochondrial membrane complexes, members of PINK1-containing protein complexes remain obscure. By mass spectrometric analysis of PINK1 co-immunoprecipitates, we identify the inner membrane protein TIM23 as a component of the PINK1 complex. TIM23 downregulation decreases PINK1 levels and significantly delays autophosphorylation, indicating that TIM23 promotes PINK1 accumulation in response to depolarization. Moreover, inactivation of the mitochondrial protease OMA1 not only enhances PINK1 accumulation but also represses the reduction in PINK1 levels induced by TIM23 downregulation, suggesting that TIM23 facilitates PINK1 activation by safeguarding against degradation by OMA1. Indeed, deficiencies of pathogenic PINK1 mutants that fail to interact with TIM23 are partially restored by OMA1 inactivation. These findings indicate that TIM23 plays a distinct role in activating mitochondrial autophagy by protecting PINK1.
Journal Title
Cell Reports
ISSN
22111247
Publisher
Elsevier
Volume
42
Issue
5
Start Page
112454
Published Date
2023-05-08
Rights
This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
EDB ID
DOI (Published Version)
URL ( Publisher's Version )
FullText File
language
eng
TextVersion
Publisher
departments
Institute of Advanced Medical Sciences