原肌球蛋白第3期对增强牛细丝重建心肌的等长张力至关重要。

Masataka Kawai, Xiaoying Lu, Sarah E Hitchcock-Degregori, Kristen J Stanton, Michael W Wandling
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引用次数: 18

摘要

原肌球蛋白(Tm)由7个类似的重复序列组成,称为“周期”,其特定功能可能与这些周期有关。为了验证第2或第3周期通过诱导肌动蛋白的正变构效应来促进力产生的假设,我们用突变体Tm重构了第2周期(Delta2Tm)或第3周期(Delta3Tm)缺失的细丝。然后我们研究了:等距张力,刚度,6个动力学常数,以及pca -张力的关系。Tm的n端乙酰化没有引起任何差异。Delta2Tm的等长张力保持不变,而Delta3Tm的等长张力降低了约60%。虽然动力学常数变化不大,但强附着力交叉桥的占用率变化不大。Delta2Tm(1.79 +/- 0.19)与对照(1.73 +/- 0.21)、Delta3Tm(1.35 +/- 0.22)之间的Hill因子(协同性)无显著差异。与对照(5.28 +/- 0.04)相比,pCa(50)在Delta2Tm中略有降低(5.11 +/- 0.07),在Delta3Tm中显著升高(5.57 +/- 0.09)。这些结果表明,当离子在肌纤维系统中以生理浓度存在时,第3期(而不是第2期)对于增强肌动蛋白和肌球蛋白之间相互作用的正变构效应是必不可少的,并增加了每个交叉桥的等长力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Tropomyosin period 3 is essential for enhancement of isometric tension in thin filament-reconstituted bovine myocardium.

Tropomyosin (Tm) consists of 7 quasiequivalent repeats known as "periods," and its specific function may be associated with these periods. To test the hypothesis that either period 2 or 3 promotes force generation by inducing a positive allosteric effect on actin, we reconstituted the thin filament with mutant Tm in which either period 2 (Delta2Tm) or period 3 (Delta3Tm) was deleted. We then studied: isometric tension, stiffness, 6 kinetic constants, and the pCa-tension relationship. N-terminal acetylation of Tm did not cause any differences. The isometric tension in Delta2Tm remained unchanged, and was reduced to approximately 60% in Delta3Tm. Although the kinetic constants underwent small changes, the occupancy of strongly attached cross-bridges was not much different. The Hill factor (cooperativity) did not differ significantly between Delta2Tm (1.79 +/- 0.19) and the control (1.73 +/- 0.21), or Delta3Tm (1.35 +/- 0.22) and the control. In contrast, pCa(50) decreased slightly in Delta2Tm (5.11 +/- 0.07), and increased significantly in Delta3Tm (5.57 +/- 0.09) compared to the control (5.28 +/- 0.04). These results demonstrate that, when ions are present at physiological concentrations in the muscle fiber system, period 3 (but not period 2) is essential for the positive allosteric effect that enhances the interaction between actin and myosin, and increases isometric force of each cross-bridge.

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