VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics
Insulin resistance and lower muscle strength in relation to mass are hallmarks of type 2 diabetes. Here, the authors report alterations in muscle stem cells from individuals with type 2 diabetes that may contribute to these phenotypes through VPS39 mediated effects on autophagy and epigenetics.
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Nature Portfolio
2021
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oai:doaj.org-article:7112e41c1e98491c8e3cfe67e2e5bdd82021-12-02T13:39:22ZVPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics10.1038/s41467-021-22068-52041-1723https://doaj.org/article/7112e41c1e98491c8e3cfe67e2e5bdd82021-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22068-5https://doaj.org/toc/2041-1723Insulin resistance and lower muscle strength in relation to mass are hallmarks of type 2 diabetes. Here, the authors report alterations in muscle stem cells from individuals with type 2 diabetes that may contribute to these phenotypes through VPS39 mediated effects on autophagy and epigenetics.Cajsa DavegårdhJohanna SällAnna BenrickChrista BroholmPetr VolkovAlexander PerfilyevTora Ida HenriksenYanling WuLine HjortCharlotte BrønsOla HanssonMaria PedersenJens U. WürthnerKlaus PfefferEmma NilssonAllan VaagElisabet Stener-VictorinKarolina PircsCamilla ScheeleCharlotte LingNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-20 (2021) |
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Science Q Cajsa Davegårdh Johanna Säll Anna Benrick Christa Broholm Petr Volkov Alexander Perfilyev Tora Ida Henriksen Yanling Wu Line Hjort Charlotte Brøns Ola Hansson Maria Pedersen Jens U. Würthner Klaus Pfeffer Emma Nilsson Allan Vaag Elisabet Stener-Victorin Karolina Pircs Camilla Scheele Charlotte Ling VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
description |
Insulin resistance and lower muscle strength in relation to mass are hallmarks of type 2 diabetes. Here, the authors report alterations in muscle stem cells from individuals with type 2 diabetes that may contribute to these phenotypes through VPS39 mediated effects on autophagy and epigenetics. |
format |
article |
author |
Cajsa Davegårdh Johanna Säll Anna Benrick Christa Broholm Petr Volkov Alexander Perfilyev Tora Ida Henriksen Yanling Wu Line Hjort Charlotte Brøns Ola Hansson Maria Pedersen Jens U. Würthner Klaus Pfeffer Emma Nilsson Allan Vaag Elisabet Stener-Victorin Karolina Pircs Camilla Scheele Charlotte Ling |
author_facet |
Cajsa Davegårdh Johanna Säll Anna Benrick Christa Broholm Petr Volkov Alexander Perfilyev Tora Ida Henriksen Yanling Wu Line Hjort Charlotte Brøns Ola Hansson Maria Pedersen Jens U. Würthner Klaus Pfeffer Emma Nilsson Allan Vaag Elisabet Stener-Victorin Karolina Pircs Camilla Scheele Charlotte Ling |
author_sort |
Cajsa Davegårdh |
title |
VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
title_short |
VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
title_full |
VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
title_fullStr |
VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
title_full_unstemmed |
VPS39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
title_sort |
vps39-deficiency observed in type 2 diabetes impairs muscle stem cell differentiation via altered autophagy and epigenetics |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/7112e41c1e98491c8e3cfe67e2e5bdd8 |
work_keys_str_mv |
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