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Precise control of microtubule disassembly in living cells

Microtubules tightly regulate various cellular activities. Our understanding of microtubules is largely based on experiments using microtubule‐targeting agents, which, however, are insufficient to dissect the dynamic mechanisms of specific microtubule populations, due to their slow effects on the en...

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Autores principales: Liu, Grace Y, Chen, Shiau‐Chi, Lee, Gang‐Hui, Shaiv, Kritika, Chen, Pin‐Yu, Cheng, Hsuan, Hong, Shi‐Rong, Yang, Wen‐Ting, Huang, Shih‐Han, Chang, Ya‐Chu, Wang, Hsien‐Chu, Kao, Ching‐Lin, Sun, Pin‐Chiao, Chao, Ming‐Hong, Lee, Yian‐Ying, Tang, Ming‐Jer, Lin, Yu‐Chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9340485/
https://www.ncbi.nlm.nih.gov/pubmed/35686621
http://dx.doi.org/10.15252/embj.2021110472
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author Liu, Grace Y
Chen, Shiau‐Chi
Lee, Gang‐Hui
Shaiv, Kritika
Chen, Pin‐Yu
Cheng, Hsuan
Hong, Shi‐Rong
Yang, Wen‐Ting
Huang, Shih‐Han
Chang, Ya‐Chu
Wang, Hsien‐Chu
Kao, Ching‐Lin
Sun, Pin‐Chiao
Chao, Ming‐Hong
Lee, Yian‐Ying
Tang, Ming‐Jer
Lin, Yu‐Chun
author_facet Liu, Grace Y
Chen, Shiau‐Chi
Lee, Gang‐Hui
Shaiv, Kritika
Chen, Pin‐Yu
Cheng, Hsuan
Hong, Shi‐Rong
Yang, Wen‐Ting
Huang, Shih‐Han
Chang, Ya‐Chu
Wang, Hsien‐Chu
Kao, Ching‐Lin
Sun, Pin‐Chiao
Chao, Ming‐Hong
Lee, Yian‐Ying
Tang, Ming‐Jer
Lin, Yu‐Chun
author_sort Liu, Grace Y
collection PubMed
description Microtubules tightly regulate various cellular activities. Our understanding of microtubules is largely based on experiments using microtubule‐targeting agents, which, however, are insufficient to dissect the dynamic mechanisms of specific microtubule populations, due to their slow effects on the entire pool of microtubules. To overcome this technological limitation, we have used chemo and optogenetics to disassemble specific microtubule subtypes, including tyrosinated microtubules, primary cilia, mitotic spindles, and intercellular bridges, by rapidly recruiting engineered microtubule‐cleaving enzymes onto target microtubules in a reversible manner. Using this approach, we show that acute microtubule disassembly swiftly halts vesicular trafficking and lysosomal dynamics. It also immediately triggers Golgi and ER reorganization and slows the fusion/fission of mitochondria without affecting mitochondrial membrane potential. In addition, cell rigidity is increased after microtubule disruption owing to increased contractile stress fibers. Microtubule disruption furthermore prevents cell division, but does not cause cell death during interphase. Overall, the reported tools facilitate detailed analysis of how microtubules precisely regulate cellular architecture and functions.
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spelling pubmed-93404852022-08-09 Precise control of microtubule disassembly in living cells Liu, Grace Y Chen, Shiau‐Chi Lee, Gang‐Hui Shaiv, Kritika Chen, Pin‐Yu Cheng, Hsuan Hong, Shi‐Rong Yang, Wen‐Ting Huang, Shih‐Han Chang, Ya‐Chu Wang, Hsien‐Chu Kao, Ching‐Lin Sun, Pin‐Chiao Chao, Ming‐Hong Lee, Yian‐Ying Tang, Ming‐Jer Lin, Yu‐Chun EMBO J Resource Microtubules tightly regulate various cellular activities. Our understanding of microtubules is largely based on experiments using microtubule‐targeting agents, which, however, are insufficient to dissect the dynamic mechanisms of specific microtubule populations, due to their slow effects on the entire pool of microtubules. To overcome this technological limitation, we have used chemo and optogenetics to disassemble specific microtubule subtypes, including tyrosinated microtubules, primary cilia, mitotic spindles, and intercellular bridges, by rapidly recruiting engineered microtubule‐cleaving enzymes onto target microtubules in a reversible manner. Using this approach, we show that acute microtubule disassembly swiftly halts vesicular trafficking and lysosomal dynamics. It also immediately triggers Golgi and ER reorganization and slows the fusion/fission of mitochondria without affecting mitochondrial membrane potential. In addition, cell rigidity is increased after microtubule disruption owing to increased contractile stress fibers. Microtubule disruption furthermore prevents cell division, but does not cause cell death during interphase. Overall, the reported tools facilitate detailed analysis of how microtubules precisely regulate cellular architecture and functions. John Wiley and Sons Inc. 2022-06-10 /pmc/articles/PMC9340485/ /pubmed/35686621 http://dx.doi.org/10.15252/embj.2021110472 Text en © 2022 The Authors. Published under the terms of the CC BY NC ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Resource
Liu, Grace Y
Chen, Shiau‐Chi
Lee, Gang‐Hui
Shaiv, Kritika
Chen, Pin‐Yu
Cheng, Hsuan
Hong, Shi‐Rong
Yang, Wen‐Ting
Huang, Shih‐Han
Chang, Ya‐Chu
Wang, Hsien‐Chu
Kao, Ching‐Lin
Sun, Pin‐Chiao
Chao, Ming‐Hong
Lee, Yian‐Ying
Tang, Ming‐Jer
Lin, Yu‐Chun
Precise control of microtubule disassembly in living cells
title Precise control of microtubule disassembly in living cells
title_full Precise control of microtubule disassembly in living cells
title_fullStr Precise control of microtubule disassembly in living cells
title_full_unstemmed Precise control of microtubule disassembly in living cells
title_short Precise control of microtubule disassembly in living cells
title_sort precise control of microtubule disassembly in living cells
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9340485/
https://www.ncbi.nlm.nih.gov/pubmed/35686621
http://dx.doi.org/10.15252/embj.2021110472
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