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通过X射线纤维衍射研究骨骼肌收缩过程中与细肌丝结合的调节蛋白的结构变化。

Structural changes of the regulatory proteins bound to the thin filaments in skeletal muscle contraction by X-ray fiber diffraction.

作者信息

Sugimoto Yasunobu, Takezawa Yasunori, Matsuo Tatsuhito, Ueno Yutaka, Minakata Shiho, Tanaka Hidehiro, Wakabayashi Katsuzo

机构信息

Division of Biophysical Engineering, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.

出版信息

Biochem Biophys Res Commun. 2008 Apr 25;369(1):100-8. doi: 10.1016/j.bbrc.2007.11.088. Epub 2007 Dec 17.

Abstract

In order to clarify the structural changes related to the regulation mechanism in skeletal muscle contraction, the intensity changes of thin filament-based reflections were investigated by X-ray fiber diffraction. The time course and extent of intensity changes of the first to third order troponin (TN)-associated meridional reflections with a basic repeat of 38.4nm were different for each of these reflections. The intensity of the first and second thin filament layer lines changed in a reciprocal manner both during initial activation and during the force generation process. The axial spacings of the TN-meridional reflections decreased by approximately 0.1% upon activation relative to the relaxing state and increased by approximately 0.24% in the force generation state, in line with that of the 2.7-nm reflection. Ca(2+)-binding to TN triggered the shortening and a change in the helical symmetry of the thin filaments. Modeling of the structural changes using the intensities of the thin filament-based reflections suggested that the conformation of the globular core domain of TN altered upon activation, undergoing additional conformational changes at the tension plateau. The tail domain of TN moved together with tropomyosin during contraction. The results indicate that the structural changes of regulatory proteins bound to the actin filaments occur in two steps, the first in response to the Ca(2+)-binding and the second induced by actomyosin interaction.

摘要

为了阐明与骨骼肌收缩调节机制相关的结构变化,通过X射线纤维衍射研究了基于细肌丝反射的强度变化。对于这些反射中的每一个,具有38.4nm基本重复单位的第一至三阶肌钙蛋白(TN)相关子午线反射的强度变化的时间进程和程度各不相同。在初始激活期间和力产生过程中,第一和第二细肌丝层线的强度以相反的方式变化。相对于松弛状态,激活时TN子午线反射的轴向间距减小约0.1%,在力产生状态下增加约0.24%,与2.7nm反射的情况一致。Ca(2+)与TN结合引发细肌丝缩短和螺旋对称性改变。利用基于细肌丝反射的强度对结构变化进行建模表明,激活时TN球状核心结构域的构象发生改变,在张力平台期经历额外的构象变化。收缩过程中,TN的尾部结构域与原肌球蛋白一起移动。结果表明,与肌动蛋白丝结合的调节蛋白的结构变化分两步发生,第一步是对Ca(2+)结合的反应,第二步是由肌动球蛋白相互作用诱导的。

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