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Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle

The cavin proteins are essential for caveola biogenesis and function. Here, we identify a role for the muscle-specific component, Cavin4, in skeletal muscle T-tubule development by analyzing two vertebrate systems, mouse and zebrafish. In both models, Cavin4 localized to T-tubules, and loss of Cavin...

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Autores principales: Lo, Harriet P., Lim, Ye-Wheen, Xiong, Zherui, Martel, Nick, Ferguson, Charles, Ariotti, Nicholas, Giacomotto, Jean, Rae, James, Floetenmeyer, Matthias, Moradi, Shayli Varasteh, Gao, Ya, Tillu, Vikas A., Xia, Di, Wang, Huang, Rahnama, Samira, Nixon, Susan J., Bastiani, Michele, Day, Ryan D., Smith, Kelly A., Palpant, Nathan J., Johnston, Wayne A., Alexandrov, Kirill, Collins, Brett M., Hall, Thomas E., Parton, Robert G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513623/
https://www.ncbi.nlm.nih.gov/pubmed/34633413
http://dx.doi.org/10.1083/jcb.201905065
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author Lo, Harriet P.
Lim, Ye-Wheen
Xiong, Zherui
Martel, Nick
Ferguson, Charles
Ariotti, Nicholas
Giacomotto, Jean
Rae, James
Floetenmeyer, Matthias
Moradi, Shayli Varasteh
Gao, Ya
Tillu, Vikas A.
Xia, Di
Wang, Huang
Rahnama, Samira
Nixon, Susan J.
Bastiani, Michele
Day, Ryan D.
Smith, Kelly A.
Palpant, Nathan J.
Johnston, Wayne A.
Alexandrov, Kirill
Collins, Brett M.
Hall, Thomas E.
Parton, Robert G.
author_facet Lo, Harriet P.
Lim, Ye-Wheen
Xiong, Zherui
Martel, Nick
Ferguson, Charles
Ariotti, Nicholas
Giacomotto, Jean
Rae, James
Floetenmeyer, Matthias
Moradi, Shayli Varasteh
Gao, Ya
Tillu, Vikas A.
Xia, Di
Wang, Huang
Rahnama, Samira
Nixon, Susan J.
Bastiani, Michele
Day, Ryan D.
Smith, Kelly A.
Palpant, Nathan J.
Johnston, Wayne A.
Alexandrov, Kirill
Collins, Brett M.
Hall, Thomas E.
Parton, Robert G.
author_sort Lo, Harriet P.
collection PubMed
description The cavin proteins are essential for caveola biogenesis and function. Here, we identify a role for the muscle-specific component, Cavin4, in skeletal muscle T-tubule development by analyzing two vertebrate systems, mouse and zebrafish. In both models, Cavin4 localized to T-tubules, and loss of Cavin4 resulted in aberrant T-tubule maturation. In zebrafish, which possess duplicated cavin4 paralogs, Cavin4b was shown to directly interact with the T-tubule–associated BAR domain protein Bin1. Loss of both Cavin4a and Cavin4b caused aberrant accumulation of interconnected caveolae within the T-tubules, a fragmented T-tubule network enriched in Caveolin-3, and an impaired Ca(2+) response upon mechanical stimulation. We propose a role for Cavin4 in remodeling the T-tubule membrane early in development by recycling caveolar components from the T-tubule to the sarcolemma. This generates a stable T-tubule domain lacking caveolae that is essential for T-tubule function.
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spelling pubmed-85136232022-06-06 Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle Lo, Harriet P. Lim, Ye-Wheen Xiong, Zherui Martel, Nick Ferguson, Charles Ariotti, Nicholas Giacomotto, Jean Rae, James Floetenmeyer, Matthias Moradi, Shayli Varasteh Gao, Ya Tillu, Vikas A. Xia, Di Wang, Huang Rahnama, Samira Nixon, Susan J. Bastiani, Michele Day, Ryan D. Smith, Kelly A. Palpant, Nathan J. Johnston, Wayne A. Alexandrov, Kirill Collins, Brett M. Hall, Thomas E. Parton, Robert G. J Cell Biol Article The cavin proteins are essential for caveola biogenesis and function. Here, we identify a role for the muscle-specific component, Cavin4, in skeletal muscle T-tubule development by analyzing two vertebrate systems, mouse and zebrafish. In both models, Cavin4 localized to T-tubules, and loss of Cavin4 resulted in aberrant T-tubule maturation. In zebrafish, which possess duplicated cavin4 paralogs, Cavin4b was shown to directly interact with the T-tubule–associated BAR domain protein Bin1. Loss of both Cavin4a and Cavin4b caused aberrant accumulation of interconnected caveolae within the T-tubules, a fragmented T-tubule network enriched in Caveolin-3, and an impaired Ca(2+) response upon mechanical stimulation. We propose a role for Cavin4 in remodeling the T-tubule membrane early in development by recycling caveolar components from the T-tubule to the sarcolemma. This generates a stable T-tubule domain lacking caveolae that is essential for T-tubule function. Rockefeller University Press 2021-10-11 /pmc/articles/PMC8513623/ /pubmed/34633413 http://dx.doi.org/10.1083/jcb.201905065 Text en © 2021 Lo et al. https://creativecommons.org/licenses/by-nc-sa/4.0/http://www.rupress.org/terms/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Lo, Harriet P.
Lim, Ye-Wheen
Xiong, Zherui
Martel, Nick
Ferguson, Charles
Ariotti, Nicholas
Giacomotto, Jean
Rae, James
Floetenmeyer, Matthias
Moradi, Shayli Varasteh
Gao, Ya
Tillu, Vikas A.
Xia, Di
Wang, Huang
Rahnama, Samira
Nixon, Susan J.
Bastiani, Michele
Day, Ryan D.
Smith, Kelly A.
Palpant, Nathan J.
Johnston, Wayne A.
Alexandrov, Kirill
Collins, Brett M.
Hall, Thomas E.
Parton, Robert G.
Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle
title Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle
title_full Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle
title_fullStr Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle
title_full_unstemmed Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle
title_short Cavin4 interacts with Bin1 to promote T-tubule formation and stability in developing skeletal muscle
title_sort cavin4 interacts with bin1 to promote t-tubule formation and stability in developing skeletal muscle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513623/
https://www.ncbi.nlm.nih.gov/pubmed/34633413
http://dx.doi.org/10.1083/jcb.201905065
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