Cargando…

Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC

Cells under mitochondrial stress often co-opt mechanisms to maintain energy homeostasis, mitochondrial quality control and cell survival. A mechanistic understanding of such responses is crucial for further insight into mitochondrial biology and diseases. Through an unbiased genetic screen in Drosop...

Descripción completa

Detalles Bibliográficos
Autores principales: Cheramangalam, Rajit Narayanan, Anand, Tarana, Pandey, Priyanka, Balasubramanian, Deepa, Varghese, Reshmi, Singhal, Neha, Jaiswal, Sonal Nagarkar, Jaiswal, Manish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10162545/
https://www.ncbi.nlm.nih.gov/pubmed/37098042
http://dx.doi.org/10.1371/journal.pgen.1010493
_version_ 1785037717209350144
author Cheramangalam, Rajit Narayanan
Anand, Tarana
Pandey, Priyanka
Balasubramanian, Deepa
Varghese, Reshmi
Singhal, Neha
Jaiswal, Sonal Nagarkar
Jaiswal, Manish
author_facet Cheramangalam, Rajit Narayanan
Anand, Tarana
Pandey, Priyanka
Balasubramanian, Deepa
Varghese, Reshmi
Singhal, Neha
Jaiswal, Sonal Nagarkar
Jaiswal, Manish
author_sort Cheramangalam, Rajit Narayanan
collection PubMed
description Cells under mitochondrial stress often co-opt mechanisms to maintain energy homeostasis, mitochondrial quality control and cell survival. A mechanistic understanding of such responses is crucial for further insight into mitochondrial biology and diseases. Through an unbiased genetic screen in Drosophila, we identify that mutations in lrpprc2, a homolog of the human LRPPRC gene that is linked to the French-Canadian Leigh syndrome, result in PINK1-Park activation. While the PINK1-Park pathway is well known to induce mitophagy, we show that PINK1-Park regulates mitochondrial dynamics by inducing the degradation of the mitochondrial fusion protein Mitofusin/Marf in lrpprc2 mutants. In our genetic screen, we also discover that Bendless, a K63-linked E2 conjugase, is a regulator of Marf, as loss of bendless results in increased Marf levels. We show that Bendless is required for PINK1 stability, and subsequently for PINK1-Park mediated Marf degradation under physiological conditions, and in response to mitochondrial stress as seen in lrpprc2. Additionally, we show that loss of bendless in lrpprc2 mutant eyes results in photoreceptor degeneration, indicating a neuroprotective role for Bendless-PINK1-Park mediated Marf degradation. Based on our observations, we propose that certain forms of mitochondrial stress activate Bendless-PINK1-Park to limit mitochondrial fusion, which is a cell-protective response.
format Online
Article
Text
id pubmed-10162545
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-101625452023-05-06 Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC Cheramangalam, Rajit Narayanan Anand, Tarana Pandey, Priyanka Balasubramanian, Deepa Varghese, Reshmi Singhal, Neha Jaiswal, Sonal Nagarkar Jaiswal, Manish PLoS Genet Research Article Cells under mitochondrial stress often co-opt mechanisms to maintain energy homeostasis, mitochondrial quality control and cell survival. A mechanistic understanding of such responses is crucial for further insight into mitochondrial biology and diseases. Through an unbiased genetic screen in Drosophila, we identify that mutations in lrpprc2, a homolog of the human LRPPRC gene that is linked to the French-Canadian Leigh syndrome, result in PINK1-Park activation. While the PINK1-Park pathway is well known to induce mitophagy, we show that PINK1-Park regulates mitochondrial dynamics by inducing the degradation of the mitochondrial fusion protein Mitofusin/Marf in lrpprc2 mutants. In our genetic screen, we also discover that Bendless, a K63-linked E2 conjugase, is a regulator of Marf, as loss of bendless results in increased Marf levels. We show that Bendless is required for PINK1 stability, and subsequently for PINK1-Park mediated Marf degradation under physiological conditions, and in response to mitochondrial stress as seen in lrpprc2. Additionally, we show that loss of bendless in lrpprc2 mutant eyes results in photoreceptor degeneration, indicating a neuroprotective role for Bendless-PINK1-Park mediated Marf degradation. Based on our observations, we propose that certain forms of mitochondrial stress activate Bendless-PINK1-Park to limit mitochondrial fusion, which is a cell-protective response. Public Library of Science 2023-04-25 /pmc/articles/PMC10162545/ /pubmed/37098042 http://dx.doi.org/10.1371/journal.pgen.1010493 Text en © 2023 Cheramangalam et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Cheramangalam, Rajit Narayanan
Anand, Tarana
Pandey, Priyanka
Balasubramanian, Deepa
Varghese, Reshmi
Singhal, Neha
Jaiswal, Sonal Nagarkar
Jaiswal, Manish
Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC
title Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC
title_full Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC
title_fullStr Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC
title_full_unstemmed Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC
title_short Bendless is essential for PINK1-Park mediated Mitofusin degradation under mitochondrial stress caused by loss of LRPPRC
title_sort bendless is essential for pink1-park mediated mitofusin degradation under mitochondrial stress caused by loss of lrpprc
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10162545/
https://www.ncbi.nlm.nih.gov/pubmed/37098042
http://dx.doi.org/10.1371/journal.pgen.1010493
work_keys_str_mv AT cheramangalamrajitnarayanan bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT anandtarana bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT pandeypriyanka bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT balasubramaniandeepa bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT varghesereshmi bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT singhalneha bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT jaiswalsonalnagarkar bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc
AT jaiswalmanish bendlessisessentialforpink1parkmediatedmitofusindegradationundermitochondrialstresscausedbylossoflrpprc