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通过时间分辨X射线衍射研究兔骨骼肌纤维中细肌丝激活的动力学。

Dynamics of thin-filament activation in rabbit skeletal muscle fibers examined by time-resolved x-ray diffraction.

作者信息

Tamura Takumi, Wakayama Jun'ichi, Inoue Katsuaki, Yagi Naoto, Iwamoto Hiroyuki

机构信息

Laboratory of Structural Biochemistry, RIKEN Harima Institute, Hyogo 679-6148, Japan.

出版信息

Biophys J. 2009 Feb;96(3):1045-55. doi: 10.1016/j.bpj.2008.09.022.

Abstract

By using skinned-rabbit skeletal muscle fibers, the time courses of changes of thin filament-based x-ray reflections were followed at a 3.4-ms time resolution during thin-filament activation. To discriminate between the effects of calcium binding and myosin binding on thin-filament activity, measurements were performed after caged-calcium photolysis in fibers with full-filament or no-filament overlap, or during force recovery after a quick release. All three reflections examined, i.e., the second actin layer line (second ALL, reporting the tropomyosin movement), the sixth ALL (reporting actin structural change), and the meridional troponin reflections, exhibited calcium-induced and myosin-induced components, but their rate constants and polarities were different. Generally, calcium-induced components exhibited fast rate constants (>100 s(-1)). The myosin-induced components of the second ALL had a rate constant similar to that of the force (7-10 s(-1)), but that of the sixth ALL was apparently faster. The myosin-induced component of troponin reflection was the only one with negative polarity, and was too slow to be analyzed with this protocol. The results suggest that the three regulation-related proteins change their structures with different rate constants, and the significance of these findings is discussed in the context of a cooperative thin-filament activation mechanism.

摘要

通过使用去皮肤的兔骨骼肌纤维,在细肌丝激活过程中,以3.4毫秒的时间分辨率跟踪基于细肌丝的X射线反射的变化时间进程。为了区分钙结合和肌球蛋白结合对细肌丝活性的影响,在全肌丝或无肌丝重叠的纤维中进行笼锁钙光解后,或在快速释放后的力恢复过程中进行测量。所检测的所有三种反射,即第二条肌动蛋白层线(第二条ALL,反映原肌球蛋白的移动)、第六条ALL(反映肌动蛋白结构变化)和肌钙蛋白的子午线反射,均表现出钙诱导和肌球蛋白诱导的成分,但它们的速率常数和极性不同。一般来说,钙诱导的成分表现出快速的速率常数(>100 s(-1))。第二条ALL的肌球蛋白诱导成分的速率常数与力的速率常数相似(7-10 s(-1)),但第六条ALL的速率常数明显更快。肌钙蛋白反射的肌球蛋白诱导成分是唯一具有负极性的成分,并且太慢以至于无法用该方案进行分析。结果表明,三种与调节相关的蛋白质以不同的速率常数改变其结构,并在协同细肌丝激活机制的背景下讨论了这些发现的意义。

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