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废弃的大鼠比目鱼肌中肌球蛋白和天然细肌丝的机械相互作用。

Mechanical interaction of myosin and native thin filament in the disused rat soleus muscle.

机构信息

Institute of Immunology and Physiology, Ural Branch of the Russian Academy of Sciences, Ekaterinburg, Russia; Institute of Biomedical Problems, Russian Academy of Sciences, Moscow, Russia.

Institute of Immunology and Physiology, Ural Branch of the Russian Academy of Sciences, Ekaterinburg, Russia.

出版信息

Life Sci Space Res (Amst). 2024 May;41:80-85. doi: 10.1016/j.lssr.2024.01.009. Epub 2024 Feb 4.

Abstract

The disuse of skeletal limb muscles occurs in a variety of conditions, yet our comprehension of the molecular mechanisms involved in adaptation to disuse remains incomplete. We studied the mechanical characteristics of actin-myosin interaction using an in vitro motility assay and isoform composition of myosin heavy and light chains by dint of SDS-PAGE in soleus muscle of both control and hindlimb-unloaded rats. 14 days of hindlimb unloading led to the increased maximum sliding velocity of actin, reconstituted, and native thin filaments over rat soleus muscle myosin by 24 %, 19 %, and 20 %, respectively. The calcium sensitivity of the "pCa-velocity" relationship decreased. There was a 26 % increase in fast myosin heavy chain IIa (MHC IIa), a 22 % increase in fast myosin light chain 2 (MLC 2f), and a 13 % increase in fast MLC 1f content. The content of MLC 1s/v, typical for slow skeletal muscles and cardiac ventricles did not change. At the same time, MLC 1s, typical only for slow skeletal muscles, disappeared. The maximum velocity of soleus muscle native thin filaments was 24 % higher compared to control ones sliding over the same rabbit myosin. Therefore, both myosin and native thin filament kinetics could influence the mechanical characteristics of the soleus muscle. Additionally, the MLC 1s and MLC 1s/v ratio may contribute to the mechanical characteristics of slow skeletal muscle, along with MHC, MLC 2, and MLC 1 slow/fast isoforms ratio.

摘要

在各种情况下都会发生肢体骨骼肌肉的废用,然而我们对于适应废用所涉及的分子机制的理解仍不完整。我们通过体外运动分析研究了肌动球蛋白相互作用的力学特性,以及通过 SDS-PAGE 研究了比目鱼肌中肌球蛋白重链和轻链同工型的组成,这是在对照组和去负荷后大鼠的后肢中完成的。14 天的后肢去负荷导致大鼠比目鱼肌肌球蛋白重组和天然薄丝的最大滑行速度分别增加了 24%、19%和 20%。钙敏感性的“pCa-速度”关系降低了。快速肌球蛋白重链 IIa(MHC IIa)增加了 26%,快速肌球蛋白轻链 2(MLC 2f)增加了 22%,快速 MLC 1f 增加了 13%。典型的慢肌和心室的 MLC 1s/v 含量没有变化。同时,只存在于慢肌中的 MLC 1s 消失了。与对照组相比,比目鱼肌天然薄丝的最大速度高出 24%,而这些薄丝是在同样的兔肌球蛋白上滑动的。因此,肌球蛋白和天然薄丝的动力学都可能影响比目鱼肌的力学特性。此外,MLC 1s 和 MLC 1s/v 比值可能与 MHC、MLC 2 和 MLC 1 慢/快同工型比值一起,对慢肌的力学特性有贡献。

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