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Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms

Mitochondrial quality control plays an important role in maintaining mitochondrial homeostasis and function. Disruption of mitochondrial quality control degrades brain function. We found that flunarizine (FNZ), a drug whose chronic use causes parkinsonism, led to a parkinsonism-like motor dysfunctio...

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Autores principales: Bao, Feixiang, Zhou, Lingyan, Zhou, Rui, Huang, Qiaoying, Chen, Junguo, Zeng, Sheng, Wu, Yi, Yang, Liang, Qian, Shufang, Wang, Mengfei, He, Xueying, Liang, Shan, Qi, Juntao, Xiang, Ge, Long, Qi, Guo, Jingyi, Ying, Zhongfu, Zhou, Yanshuang, Zhao, Qiuge, Zhang, Jiwei, Zhang, Di, Sun, Wei, Gao, Mi, Wu, Hao, Zhao, Yifan, Nie, Jinfu, Li, Min, Chen, Quan, Chen, Jiekai, Zhang, Xiao, Pan, Guangjin, Zhang, Hong, Li, Mingtao, Tian, Mei, Liu, Xingguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9007515/
https://www.ncbi.nlm.nih.gov/pubmed/35417232
http://dx.doi.org/10.1126/sciadv.abk2376
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author Bao, Feixiang
Zhou, Lingyan
Zhou, Rui
Huang, Qiaoying
Chen, Junguo
Zeng, Sheng
Wu, Yi
Yang, Liang
Qian, Shufang
Wang, Mengfei
He, Xueying
Liang, Shan
Qi, Juntao
Xiang, Ge
Long, Qi
Guo, Jingyi
Ying, Zhongfu
Zhou, Yanshuang
Zhao, Qiuge
Zhang, Jiwei
Zhang, Di
Sun, Wei
Gao, Mi
Wu, Hao
Zhao, Yifan
Nie, Jinfu
Li, Min
Chen, Quan
Chen, Jiekai
Zhang, Xiao
Pan, Guangjin
Zhang, Hong
Li, Mingtao
Tian, Mei
Liu, Xingguo
author_facet Bao, Feixiang
Zhou, Lingyan
Zhou, Rui
Huang, Qiaoying
Chen, Junguo
Zeng, Sheng
Wu, Yi
Yang, Liang
Qian, Shufang
Wang, Mengfei
He, Xueying
Liang, Shan
Qi, Juntao
Xiang, Ge
Long, Qi
Guo, Jingyi
Ying, Zhongfu
Zhou, Yanshuang
Zhao, Qiuge
Zhang, Jiwei
Zhang, Di
Sun, Wei
Gao, Mi
Wu, Hao
Zhao, Yifan
Nie, Jinfu
Li, Min
Chen, Quan
Chen, Jiekai
Zhang, Xiao
Pan, Guangjin
Zhang, Hong
Li, Mingtao
Tian, Mei
Liu, Xingguo
author_sort Bao, Feixiang
collection PubMed
description Mitochondrial quality control plays an important role in maintaining mitochondrial homeostasis and function. Disruption of mitochondrial quality control degrades brain function. We found that flunarizine (FNZ), a drug whose chronic use causes parkinsonism, led to a parkinsonism-like motor dysfunction in mice. FNZ induced mitochondrial dysfunction and decreased mitochondrial mass specifically in the brain. FNZ decreased mitochondrial content in both neurons and astrocytes, without affecting the number of nigral dopaminergic neurons. In human neural progenitor cells, FNZ also induced mitochondrial depletion. Mechanistically, independent of ATG5- or RAB9-mediated mitophagy, mitochondria were engulfed by lysosomes, followed by a vesicle-associated membrane protein 2– and syntaxin-4–dependent extracellular secretion. A genome-wide CRISPR knockout screen identified genes required for FNZ-induced mitochondrial elimination. These results reveal not only a previously unidentified lysosome-associated exocytosis process of mitochondrial quality control that may participate in the FNZ-induced parkinsonism but also a drug-based method for generating mitochondria-depleted mammal cells.
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spelling pubmed-90075152022-04-22 Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms Bao, Feixiang Zhou, Lingyan Zhou, Rui Huang, Qiaoying Chen, Junguo Zeng, Sheng Wu, Yi Yang, Liang Qian, Shufang Wang, Mengfei He, Xueying Liang, Shan Qi, Juntao Xiang, Ge Long, Qi Guo, Jingyi Ying, Zhongfu Zhou, Yanshuang Zhao, Qiuge Zhang, Jiwei Zhang, Di Sun, Wei Gao, Mi Wu, Hao Zhao, Yifan Nie, Jinfu Li, Min Chen, Quan Chen, Jiekai Zhang, Xiao Pan, Guangjin Zhang, Hong Li, Mingtao Tian, Mei Liu, Xingguo Sci Adv Biomedicine and Life Sciences Mitochondrial quality control plays an important role in maintaining mitochondrial homeostasis and function. Disruption of mitochondrial quality control degrades brain function. We found that flunarizine (FNZ), a drug whose chronic use causes parkinsonism, led to a parkinsonism-like motor dysfunction in mice. FNZ induced mitochondrial dysfunction and decreased mitochondrial mass specifically in the brain. FNZ decreased mitochondrial content in both neurons and astrocytes, without affecting the number of nigral dopaminergic neurons. In human neural progenitor cells, FNZ also induced mitochondrial depletion. Mechanistically, independent of ATG5- or RAB9-mediated mitophagy, mitochondria were engulfed by lysosomes, followed by a vesicle-associated membrane protein 2– and syntaxin-4–dependent extracellular secretion. A genome-wide CRISPR knockout screen identified genes required for FNZ-induced mitochondrial elimination. These results reveal not only a previously unidentified lysosome-associated exocytosis process of mitochondrial quality control that may participate in the FNZ-induced parkinsonism but also a drug-based method for generating mitochondria-depleted mammal cells. American Association for the Advancement of Science 2022-04-13 /pmc/articles/PMC9007515/ /pubmed/35417232 http://dx.doi.org/10.1126/sciadv.abk2376 Text en Copyright © 2022 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Biomedicine and Life Sciences
Bao, Feixiang
Zhou, Lingyan
Zhou, Rui
Huang, Qiaoying
Chen, Junguo
Zeng, Sheng
Wu, Yi
Yang, Liang
Qian, Shufang
Wang, Mengfei
He, Xueying
Liang, Shan
Qi, Juntao
Xiang, Ge
Long, Qi
Guo, Jingyi
Ying, Zhongfu
Zhou, Yanshuang
Zhao, Qiuge
Zhang, Jiwei
Zhang, Di
Sun, Wei
Gao, Mi
Wu, Hao
Zhao, Yifan
Nie, Jinfu
Li, Min
Chen, Quan
Chen, Jiekai
Zhang, Xiao
Pan, Guangjin
Zhang, Hong
Li, Mingtao
Tian, Mei
Liu, Xingguo
Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
title Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
title_full Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
title_fullStr Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
title_full_unstemmed Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
title_short Mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
title_sort mitolysosome exocytosis, a mitophagy-independent mitochondrial quality control in flunarizine-induced parkinsonism-like symptoms
topic Biomedicine and Life Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9007515/
https://www.ncbi.nlm.nih.gov/pubmed/35417232
http://dx.doi.org/10.1126/sciadv.abk2376
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