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首页> 外文期刊>Journal of cell biology >Microtubules can bear enhanced compressive loads in living cells because of lateral reinforcement
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Microtubules can bear enhanced compressive loads in living cells because of lateral reinforcement

机译:微管可通过侧向增强而增强活细胞的压缩负荷

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Cytoskeletal microtubules have been proposed to influence cell shape and mechanics based on their ability to resist large-scale compressive forces exerted by the surrounding contractile cytoskeleton. Consistent with this, cytoplasmic microtubules are often highly curved and appear buckled because of compressive loads. However, the results of in vitro studies suggest that microtubules should buckle at much larger length scales, withstanding only exceedingly small compressive forces. This discrepancy calls into question the structural role of microtubules, and highlights our lack of quantitative knowledge of the magnitude of the forces they experience and can withstand in living cells. We show that intracellular microtubules do bear large-scale compressive loads from a variety of physiological forces, but their buckling wavelength is reduced significantly because of mechanical coupling to the surrounding elastic cytoskeleton. We quantitatively explain this behavior, and show that this coupling dramatically increases the compressive forces that microtubules can sustain, suggesting they can make a more significant structural contribution to the mechanical behavior of the cell than previously thought possible.
机译:已经提出了细胞骨架微管基于其抵抗周围收缩性细胞骨架施加的大规模压缩力的能力来影响细胞形状和力学。与此相一致的是,由于压缩负荷,细胞质微管通常高度弯曲并显得弯曲。但是,体外研究的结果表明,微管应在更大的长度尺度上弯曲,仅承受极小的压缩力。这种差异使人们怀疑微管的结构作用,并突出表明我们缺乏对它们在活细胞中所经历并能承受的力大小的定量认识。我们显示细胞内微管确实承受来自各种生理力的大规模压缩负荷,但由于与周围弹性细胞骨架的机械偶联,其屈曲波长显着降低。我们定量地解释了这种行为,并表明这种耦合极大地增加了微管可以承受的压缩力,表明它们可以对细胞的机械行为做出比以前认为的更大的结构贡献。

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