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Mesoscopic analysis of motion and conformation of cross-bridges

机译:跨桥运动和构象的介观分析

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摘要

The orientation of a cross-bridge is widely used as a parameter in determining the state of muscle. The conventional measurements of orientation, such as that made by wide-field fluorescence microscopy, electron paramagnetic resonance (EPR) or X-ray diffraction or scattering, report the average orientation of 1012–109 myosin cross-bridges. Under conditions where all the cross-bridges are immobile and assume the same orientation, for example in normal skeletal muscle in rigor, it is possible to determine the average orientation from such global measurements. But in actively contracting muscle, where a parameter indicating orientation fluctuates in time, the measurements of the average value provide no information about cross-bridge kinetics. To avoid problems associated with averaging information from trillions of cross-bridges, it is necessary to decrease the number of observed cross-bridges to a mesoscopic value (i.e. the value affected by fluctuations around the average). In such mesoscopic regimes, the averaging of the signal is minimal and dynamic behavior can be examined in great detail. Examples of mesoscopic analysis on skeletal and cardiac muscle are provided.
机译:跨桥的方向被广泛用作确定肌肉状态的参数。常规的定向测量(例如通过宽场荧光显微镜,电子顺磁共振(EPR)或X射线衍射或散射进行的定向测量)报告了10 12 –10 的平均定向9 肌球蛋白跨桥。在所有跨桥都无法移动且呈现相同方向的条件下,例如在严格的正常骨骼肌中,可以从此类总体测量值确定平均方向。但是在主动收缩的肌肉中,指示方向的参数会随时间波动,平均值的测量值无法提供有关跨桥动力学的信息。为了避免与对数万亿个跨桥的信息进行平均相关的问题,有必要将观察到的跨桥的数量减少到介观值(即受平均值附近波动影响的值)。在这种介观状态下,信号的平均值很小,可以对动态行为进行详细检查。提供了对骨骼肌和心肌的介观分析的示例。

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