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使用随机与正弦长度微扰分析测量激活肌肉纤维中的肌球蛋白横桥附着时间。

Measuring myosin cross-bridge attachment time in activated muscle fibers using stochastic vs. sinusoidal length perturbation analysis.

机构信息

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, Vermont, USA.

出版信息

J Appl Physiol (1985). 2011 Apr;110(4):1101-8. doi: 10.1152/japplphysiol.00800.2010. Epub 2011 Jan 13.

Abstract

The average time myosin cross bridges remain bound to actin (t(on)) can be measured by sinusoidal length perturbations (sinusoidal analysis) of striated muscle fibers using recently developed analytic methods. This approach allows measurements of t(on) in preparations possessing a physiologically relevant myofilament lattice. In this study, we developed an approach to measure t(on) in 5-10% of the time required for sinusoidal analysis by using stochastic length perturbations (white noise analysis). To compare these methods, we measured the influence of MgATP concentration ([MgATP]) on t(on) in demembranated myocardial strips from mice, sampling muscle behavior from 0.125 to 200 Hz with a 20-s burst of white noise vs. a 300-s series of sinusoids. Both methods detected a similar >300% increase in t(on) as [MgATP] decreased from 5 to 0.25 mM, differing by only 3-14% at any [MgATP]. Additional experiments with Drosophila indirect flight muscle fibers demonstrated that faster cross-bridge cycling kinetics permit further reducing of the perturbation time required to measure t(on). This reduced sampling time allowed strain-dependent measurements of t(on) in flight muscle fibers by combining 10-s bursts of white noise during periods of linear shortening and lengthening. Analyses revealed longer t(on) values during shortening and shorter t(on) values during lengthening. This asymmetry may provide a mechanism that contributes to oscillatory energy transfer between the flight muscles and thoracic cuticle to power flight. This study demonstrates that white noise analysis can detect underlying molecular processes associated with dynamic muscle contraction comparable to sinusoidal analysis, but in a fraction of the time.

摘要

肌球蛋白交联桥与肌动蛋白结合的平均时间(t(on))可以通过最近开发的分析方法对横纹肌纤维进行正弦长度扰动(正弦分析)来测量。这种方法允许在具有生理相关肌丝晶格的制剂中测量 t(on)。在这项研究中,我们开发了一种方法,通过使用随机长度扰动(白噪声分析),在正弦分析所需时间的 5-10%内测量 t(on)。为了比较这些方法,我们测量了 MgATP 浓度 ([MgATP]) 对脱膜心肌条带中 t(on)的影响,用白噪声对肌肉行为进行采样,频率范围为 0.125-200 Hz,采样时间为 20 s,而用正弦波则为 300 s。这两种方法都检测到 t(on)随着 [MgATP] 从 5 降至 0.25 mM 而增加了 >300%,在任何 [MgATP] 下差异仅为 3-14%。用果蝇间接飞行肌纤维进行的额外实验表明,更快的交联桥循环动力学允许进一步减少测量 t(on)所需的扰动时间。这种缩短的采样时间允许通过在线性缩短和延长期间结合 10 s 的白噪声脉冲,对飞行肌纤维进行依赖应变的 t(on)测量。分析显示,在缩短期间 t(on)值更长,在延长期间 t(on)值更短。这种不对称性可能为飞行肌肉和胸部甲壳之间的振荡能量传递提供了一种机制,从而为飞行提供动力。这项研究表明,白噪声分析可以检测与动态肌肉收缩相关的潜在分子过程,与正弦分析相当,但所需时间仅为其一部分。

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