Skeletal muscle-specific PGC-1α-b overexpression prevents eccentric contraction-induced muscle injury through an utrophin-independent pathway in mice.

阅读:1
作者:Naito Azuma, Tokuda Nao, Yamauchi Nao, Niibori Ayaka, Okada Kazuma, Himori Koichi, Ashida Yuki, Yamada Takashi
Slower oxidative fibers are more resistant to eccentric contraction (ECC)-induced muscle damage than fast-twitch glycolytic fibers, but the mechanisms remain unclear. This study investigated the roles of the exercise-inducible PGC-1α isoform PGC-1α-b and utrophin in protecting against ECC-induced damage. ECCs were induced by supramaximal electrical stimulation of the left triceps surae in C57BL/6N wild-type (WT), PGC-1α-b transgenic (Tg), utrophin knockout (Utrn KO), and PGC-1α-b Tg/Utrn KO mice. Although the proportion of fast-type myosin heavy chain (MyHC) IIb in the gastrocnemius muscle was modestly lower in PGC-1α-b Tg and PGC-1α-b Tg/Utrn KO mice than in WT and Utrn KO mice, MyHC IIb remained the predominant isoform. At 3 days post injury (dpi), WT and Utrn KO mice exhibited reduced maximum isometric torque (MIT), Evans blue dye (EBD) staining in MyHC IIb-positive fibers, and calpain-1 activation. In contrast, PGC-1α-b Tg and PGC-1α-b Tg/Utrn KO mice showed substantial MIT recovery at 1 dpi and minimal EBD uptake and calpain-1 activation at 3 dpi. PGC-1α-b Tg muscles also preserved excitation-contraction coupling proteins and displayed increased mitochondrial markers and integrin α7B expression. Together, our findings suggest that PGC-1α-b confers resistance to ECC-induced muscle damage through a Utrn-independent mechanism.

特别声明

1、本页面内容包含部分的内容是基于公开信息的合理引用;引用内容仅为补充信息,不代表本站立场。

2、若认为本页面引用内容涉及侵权,请及时与本站联系,我们将第一时间处理。

3、其他媒体/个人如需使用本页面原创内容,需注明“来源:[生知库]”并获得授权;使用引用内容的,需自行联系原作者获得许可。

4、投稿及合作请联系:info@biocloudy.com。