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Domain-Domain Interactions in Filamin A (16–23) Impose a Hierarchy of Unfolding Forces

机译:Filamin A(16–23)中的域-域相互作用强加了展开力的层次结构

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摘要

The quaternary structure of Filamin A (FLNa) 16–23 was recently shown to exhibit multiple domain-domain interactions that lead to a propeller-like construction. Here we present single-molecule force spectroscopy experiments to show a wide variety of mechanical responses of this molecule and compare it with its linear counterpart FLNa 1–8. The compact structure of FLNa 16–23 leads to a broad distribution of rupture forces and end-to-end lengths in the force-extension mode and multiple unraveling timescales in the force-clamp mode. Moreover, a subset of force-extension trajectories reveals a mechanical hierarchy in which the rupture of domain-domain interactions at high forces (>200 pN) liberates the unfolding of individual domains at low forces (∼100 pN). This mechanism may also explain the order-of-magnitude difference in the rates of the biexponential fits to the distribution of unfolding dwell times under force-clamp. Overall, FLNa 16–23 under a force of 100 pN is more compliant than the linear FLNa 1–8. Because a physiological role of FLNa is to crosslink actin filaments, this range of responses allows it to accommodate a broad spectrum of forces exerted by the cell and its environment.
机译:Filamin A(FLNa)16-23的四级结构最近显示出多个域-域相互作用,从而导致类似螺旋桨的构造。在这里,我们提供单分子力光谱实验,以显示该分子的各种机械响应,并将其与线性对应物FLNa 1-8进行比较。 FLNa 16-23的紧凑结构导致了在力扩展模式下破裂力和端到端长度的广泛分布,在力钳模式下导致了多个展开时间尺度。此外,力扩展轨迹的子集揭示了一种机械层次结构,其中在高力(> 200 pN)下域-域相互作用的破裂释放了在低力(〜100 pN)下单个域的展开。该机制还可以解释在力钳下双指数拟合的速率与展开停留时间分布的数量级差异。总体而言,在100 pN的力下,FLNa 16–23比线性FLNa 1–8更顺应。由于FLNa的生理作用是使肌动蛋白丝交联,因此该范围的反应使其能够适应细胞及其环境所施加的广泛作用力。

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