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首页> 外文期刊>Journal of Molecular Biology >Divalent cations crosslink vimentin intermediate filament tail domains to regulate network mechanics.
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Divalent cations crosslink vimentin intermediate filament tail domains to regulate network mechanics.

机译:二价阳离子交联波形蛋白中间丝尾域,以调节网络力学。

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摘要

Intermediate filament networks in the cytoplasm and nucleus are critical for the mechanical integrity of metazoan cells. However, the mechanism of crosslinking in these networks and the origins of their mechanical properties are not understood. Here, we study the elastic behavior of in vitro networks of the intermediate filament protein vimentin. Rheological experiments reveal that vimentin networks stiffen with increasing concentrations of Ca(2+) and Mg(2+), showing that divalent cations act as crosslinkers. We quantitatively describe the elastic response of vimentin networks over five decades of applied stress using a theory that treats the divalent cations as crosslinkers: at low stress, the behavior is entropic in origin, and increasing stress pulls out thermal fluctuations from single filaments, giving rise to a nonlinear response; at high stress, enthalpic stretching of individual filaments significantly modifies the nonlinearity. We investigate the elastic properties of networks formed by a series of protein variants with stepwise tail truncations and find that the last 11 amino acids of the C-terminal tail domain mediate crosslinking by divalent ions. We determined the single-filament persistence length, l(P) approximately 0.5 mum, and Young's modulus, Y approximately 9 MPa; both are consistent with literature values. Our results provide insight into a crosslinking mechanism for vimentin networks and suggest that divalent ions may help regulate the cytoskeletal structure and mechanical properties of cells.
机译:细胞质和细胞核中的中间丝网络对于后生细胞的机械完整性至关重要。但是,尚不清楚这些网络中的交联机理及其机械性质的起源。在这里,我们研究中间丝蛋白波形蛋白的体外网络的弹性行为。流变实验表明波形蛋白网络随着浓度的Ca(2+)和Mg(2+)的增加而变硬,表明二价阳离子充当交联剂。我们使用一种将二价阳离子作为交联剂的理论来定量描述波形蛋白网络在施加应力的五十年内的弹性响应:在低应力下,其行为是熵的,并且应力的增加会拉出单丝的热波动,从而引起对非线性响应;在高应力下,单个细丝的焓拉伸显着改变了非线性。我们调查了由一系列具有尾部逐步截断的蛋白质变体形成的网络的弹性特性,并发现C末端尾部结构域的最后11个氨基酸通过二价离子介导交联。我们确定单丝的持久长度l(P)约为0.5微米,杨氏模量Y约为9 MPa;两者均与文献价值一致。我们的结果为波形蛋白网络的交联机制提供了见识,并表明二价离子可能有助于调节细胞的骨架结构和机械性能。

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