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Work Done by Titin Protein Folding Assists Muscle Contraction

机译:Titin蛋白质折叠完成的工作有助于肌肉收缩

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Current theories of muscle contraction propose that the power stroke of a myosin motor is the sole source of mechanical energy driving the sliding filaments of a contracting muscle. These models exclude titin, the largest protein in the human body, which determines the passive elasticity of muscles. Here, we show that stepwise unfolding/folding of titin immunoglobulin (Ig) domains occurs in the elastic I band region of intact myofibrils at physiological sarcomere lengths and forces of 6-8 pN. We use single-molecule techniques to demonstrate that unfolded titin Ig domains undergo a spontaneous stepwise folding contraction at forces below 10 pN, delivering up to 105 zJ of additional contractile energy, which is larger than the mechanical energy delivered by the power stroke of a myosin motor. Thus, it appears inescapable that folding of titin Ig domains is an important, but as yet unrecognized, contributor to the force generated by a contracting muscle.
机译:当前的肌肉收缩理论提出,肌球蛋白马达的动力冲程是驱动收缩肌肉的滑动细丝的机械能的唯一来源。这些模型不包括人体中最大的蛋白质肌动蛋白,肌动蛋白决定了肌肉的被动弹性。在这里,我们表明,在生理肌小节长度和力为6-8 pN的情况下,完整的肌原纤维的弹性I带区域会发生逐步释放/折叠的免疫球蛋白(Ig)域。我们使用单分子技术来证明未折叠的titin Ig域在低于10 pN的力下经历自发的逐步折叠收缩,从而提供高达105 zJ的额外收缩能,该能量大于肌球蛋白的动力冲程所传递的机械能。发动机。因此,似乎不可避免的是,肌动蛋白Ig结构域的折叠是重要的但尚未被认识到的由收缩肌肉产生的力的贡献者。

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