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肌球蛋白轻链同工型对大鼠和小鼠心肌横桥动力学的微调

Fine-tuning of cross-bridge kinetics in cardiac muscle of rat and mouse by myosin light chain isoforms.

作者信息

Andruchov Oleg, Andruchova Olena, Galler Stefan

机构信息

Department of Cell Biology, University of Salzburg, Hellbrunnerstrasse 34, A-5020 Salzburg, Austria.

出版信息

Pflugers Arch. 2006 Sep;452(6):667-73. doi: 10.1007/s00424-006-0080-7. Epub 2006 Apr 14.

Abstract

Cross-bridge kinetics underlying stretch-induced force transients was studied in cardiac muscle strips with different myosin heavy chain (MHC) and myosin light chain (MLC) isoforms. The force transients were induced by stepwise stretches of maximally Ca(2+)-activated skinned muscle strips. The MHC and MLC isoforms were analyzed by electrophoreses after the mechanical experiments. Muscle strips of euthyroid rats and mice exclusively containing alpha-MHC were used. In addition, muscle strips of hyper- and hypothyroid rats containing different combinations of MHC and MLC isoforms were used. The thyroid hormone is known to alter the expression of MHC but not of MLC isoforms. In muscle strips containing exclusively alpha-MHC, atrial MLC isoforms (all atria of rats and mice) were associated with about 30% faster kinetics than ventricular MLC isoforms (ventricles of hyperthyroid rats and some muscle strips of ventricles of euthyroid rats and mice). On the other hand, in muscle strips containing exclusively ventricular MLC isoforms, alpha-MHC (ventricles of hyperthyroid rats) was associated with about 2.6 times faster kinetics than beta-MHC (ventricles of hypothyroid rats). We conclude that the MLC isoforms fine-tune cross-bridge kinetics, which underlies stretch-induced force transients, whereas the MHC isoforms mainly determine this kinetics. The effect of MLC isoforms on the cross-bridge kinetics may partially contribute to the faster twitch contraction in atria than in ventricles. Furthermore, it may play a role in various cardiomyopathies where atrial MLC isoforms are partially expressed in ventricles or ventricular MLC isoforms are partially expressed in atria.

摘要

在含有不同肌球蛋白重链(MHC)和肌球蛋白轻链(MLC)亚型的心肌条中研究了拉伸诱导的力瞬变背后的横桥动力学。力瞬变是通过对最大Ca(2+)激活的去表皮肌条进行逐步拉伸诱导产生的。机械实验后,通过电泳分析MHC和MLC亚型。使用了甲状腺功能正常的大鼠和小鼠仅含α-MHC的肌条。此外,还使用了含有不同MHC和MLC亚型组合的甲状腺功能亢进和减退大鼠的肌条。已知甲状腺激素会改变MHC的表达,但不会改变MLC亚型的表达。在仅含α-MHC的肌条中,心房MLC亚型(大鼠和小鼠的所有心房)的动力学比心室MLC亚型(甲状腺功能亢进大鼠的心室以及甲状腺功能正常大鼠和小鼠心室的一些肌条)快约30%。另一方面,在仅含心室MLC亚型的肌条中,α-MHC(甲状腺功能亢进大鼠的心室)的动力学比β-MHC(甲状腺功能减退大鼠的心室)快约2.6倍。我们得出结论,MLC亚型微调横桥动力学,这是拉伸诱导的力瞬变的基础,而MHC亚型主要决定这种动力学。MLC亚型对横桥动力学的影响可能部分导致心房比心室更快的抽搐收缩。此外,它可能在各种心肌病中起作用,在这些疾病中,心房MLC亚型在心室中部分表达,或者心室MLC亚型在心房中部分表达。

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