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  4. Mitochondrial YME1L1 governs unoccupied protein translocase channels
 
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Mitochondrial YME1L1 governs unoccupied protein translocase channels

Journal
Nature Cell Biology
Journal Volume
27
Journal Issue
2
Start Page
309
End Page
321
ISSN
1465-7392
1476-4679
Date Issued
2025-01-07
Author(s)
Meng-Chieh Hsu  
Hiroki Kinefuchi
Linlin Lei
Reika Kikuchi
Koji Yamano
Richard J. Youle
DOI
10.1038/s41556-024-01571-z
DOI
10.1038/s41556-024-01571-z
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-85214430508&origin=recordpage
https://scholars.lib.ntu.edu.tw/handle/123456789/726250
Abstract
Mitochondrial protein import through the outer and inner membranes is key to mitochondrial biogenesis. Recent studies have explored how cells respond when import is impaired by a variety of different insults. Here, we developed a mammalian import blocking system using dihydrofolate reductase fused to the N terminus of the inner membrane protein MIC60. While stabilization of the dihydrofolate reductase domain by methotrexate inhibited endogenous mitochondrial protein import, it neither activated the transcription factor ATF4, nor was affected by ATAD1 expression or by VCP/p97 inhibition. On the other hand, notably, plugging the channel of translocase of the outer membrane) induced YME1L1, an ATP-dependent protease, to eliminate translocase of the inner membrane (TIM23) channel components TIMM17A and TIMM23. The data suggest that unoccupied TIM23 complexes expose a C-terminal degron on TIMM17A to YME1L1 for degradation. Import plugging caused a cell growth defect and loss of YME1L1 exacerbated the growth inhibition, showing the protective effect of YME1L1 activity. YME1L1 seems to play a crucial role in mitochondrial quality control to counteract precursor stalling in the translocase of the outer membrane complex and unoccupied TIM23 channels.
SDGs

[SDGs]SDG2

[SDGs]SDG3

Publisher
Springer Science and Business Media LLC
Description
Article number: eaan4146
Type
journal article

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