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Stored elastic energy powers the 60-μm extension of the Limulus polyphemus sperm actin bundle

机译:储存的弹性能为poly多精子肌动蛋白束的60μm延伸提供动力

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摘要

During the 5 s of the acrosome reaction of Limulus polyphemus sperm, a 60-μm-long bundle of scruin-decorated actin filaments straightens from a coiled conformation and extends from the cell. To identify the motive force for this movement, we examined the possible sources of chemical and mechanical energy and show that the coil releases ∼10−13 J of stored mechanical strain energy, whereas chemical energy derived from calcium binding is ∼10−15 J. These measurements indicate that the coiled actin bundle extends by a spring-based mechanism, which is distinctly different from the better known polymerization or myosin-driven processes, and that calcium initiates but does not power the reaction.
机译:在poly麻精子的顶体反应的5 s内,一串长60μm的用scruin装饰的肌动蛋白丝从盘绕的构象中拉直,并从细胞中延伸出来。为了确定这种运动的动力,我们研究了可能的化学能和机械能,并表明线圈释放了存储的机械应变能的〜10 −13 J,而钙结合产生的化学能是〜10 −15 J。这些测量结果表明,卷曲的肌动蛋白束是通过基于弹簧的机制延伸的,这与众所周知的聚合反应或肌球蛋白驱动的过程明显不同,并且钙会引发但不助长反应。

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