Cargando…

A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells

Mapping the proteomic landscape of mitochondria with spatiotemporal precision plays a pivotal role in elucidating the delicate biological functions and complex relationship with other organelles in a variety of dynamic physiological processes which necessitates efficient and controllable chemical to...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, He, Wang, Zhiting, Gao, Hang, Liu, Jianhui, Qiao, Zichun, Zhao, Baofeng, Liang, Zhen, Jiang, Bo, Zhang, Lihua, Zhang, Yukui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9580500/
https://www.ncbi.nlm.nih.gov/pubmed/36320915
http://dx.doi.org/10.1039/d2sc04087e
_version_ 1784812400999923712
author Wang, He
Wang, Zhiting
Gao, Hang
Liu, Jianhui
Qiao, Zichun
Zhao, Baofeng
Liang, Zhen
Jiang, Bo
Zhang, Lihua
Zhang, Yukui
author_facet Wang, He
Wang, Zhiting
Gao, Hang
Liu, Jianhui
Qiao, Zichun
Zhao, Baofeng
Liang, Zhen
Jiang, Bo
Zhang, Lihua
Zhang, Yukui
author_sort Wang, He
collection PubMed
description Mapping the proteomic landscape of mitochondria with spatiotemporal precision plays a pivotal role in elucidating the delicate biological functions and complex relationship with other organelles in a variety of dynamic physiological processes which necessitates efficient and controllable chemical tools. We herein report a photo-oxidation driven proximity labeling strategy to profile the mitochondrial proteome by light dependence in living cells with high spatiotemporal resolution. Taking advantage of organelle-localizable organic photoactivated probes generating reactive species and nucleophilic substrates for proximal protein oxidation and trapping, mitochondrial proteins were selectively labeled by spatially limited reactions in their native environment. Integration of photo-oxidation driven proximity labeling and quantitative proteomics facilitated the plotting of the mitochondrial proteome in which up to 310 mitochondrial proteins were identified with a specificity of 64% in HeLa cells. Furthermore, mitochondrial proteome dynamics was deciphered in drug resistant Huh7 and LPS stimulated HMC3 cells which were hard-to-transfect. A number of differential proteins were quantified which were intimately linked to critical processes and provided insights into the related molecular mechanisms of drug resistance and neuroinflammation in the perspective of mitochondria. The photo-oxidation driven proximity labeling strategy offers solid technical support to a highly precise proteomic platform in time and finer space for more knowledge of subcellular biology.
format Online
Article
Text
id pubmed-9580500
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-95805002022-10-31 A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells Wang, He Wang, Zhiting Gao, Hang Liu, Jianhui Qiao, Zichun Zhao, Baofeng Liang, Zhen Jiang, Bo Zhang, Lihua Zhang, Yukui Chem Sci Chemistry Mapping the proteomic landscape of mitochondria with spatiotemporal precision plays a pivotal role in elucidating the delicate biological functions and complex relationship with other organelles in a variety of dynamic physiological processes which necessitates efficient and controllable chemical tools. We herein report a photo-oxidation driven proximity labeling strategy to profile the mitochondrial proteome by light dependence in living cells with high spatiotemporal resolution. Taking advantage of organelle-localizable organic photoactivated probes generating reactive species and nucleophilic substrates for proximal protein oxidation and trapping, mitochondrial proteins were selectively labeled by spatially limited reactions in their native environment. Integration of photo-oxidation driven proximity labeling and quantitative proteomics facilitated the plotting of the mitochondrial proteome in which up to 310 mitochondrial proteins were identified with a specificity of 64% in HeLa cells. Furthermore, mitochondrial proteome dynamics was deciphered in drug resistant Huh7 and LPS stimulated HMC3 cells which were hard-to-transfect. A number of differential proteins were quantified which were intimately linked to critical processes and provided insights into the related molecular mechanisms of drug resistance and neuroinflammation in the perspective of mitochondria. The photo-oxidation driven proximity labeling strategy offers solid technical support to a highly precise proteomic platform in time and finer space for more knowledge of subcellular biology. The Royal Society of Chemistry 2022-09-28 /pmc/articles/PMC9580500/ /pubmed/36320915 http://dx.doi.org/10.1039/d2sc04087e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, He
Wang, Zhiting
Gao, Hang
Liu, Jianhui
Qiao, Zichun
Zhao, Baofeng
Liang, Zhen
Jiang, Bo
Zhang, Lihua
Zhang, Yukui
A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
title A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
title_full A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
title_fullStr A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
title_full_unstemmed A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
title_short A photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
title_sort photo-oxidation driven proximity labeling strategy enables profiling of mitochondrial proteome dynamics in living cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9580500/
https://www.ncbi.nlm.nih.gov/pubmed/36320915
http://dx.doi.org/10.1039/d2sc04087e
work_keys_str_mv AT wanghe aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT wangzhiting aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT gaohang aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT liujianhui aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT qiaozichun aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT zhaobaofeng aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT liangzhen aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT jiangbo aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT zhanglihua aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT zhangyukui aphotooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT wanghe photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT wangzhiting photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT gaohang photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT liujianhui photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT qiaozichun photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT zhaobaofeng photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT liangzhen photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT jiangbo photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT zhanglihua photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells
AT zhangyukui photooxidationdrivenproximitylabelingstrategyenablesprofilingofmitochondrialproteomedynamicsinlivingcells