Scratching beyond the surface - minimal actin assemblies as tools to elucidate mechanical reinforcement and shape change.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Emerging Topics in Life Sciences Pub Date : 2022-12-21 DOI:10.1042/ETLS20220052
Anders Aufderhorst-Roberts, Margarita Staykova
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Abstract

The interaction between the actin cytoskeleton and the plasma membrane in eukaryotic cells is integral to a large number of functions such as shape change, mechanical reinforcement and contraction. These phenomena are driven by the architectural regulation of a thin actin network, directly beneath the membrane through interactions with a variety of binding proteins, membrane anchoring proteins and molecular motors. An increasingly common approach to understanding the mechanisms that drive these processes is to build model systems from reconstituted lipids, actin filaments and associated actin-binding proteins. Here we review recent progress in this field, with a particular emphasis on how the actin cytoskeleton provides mechanical reinforcement, drives shape change and induces contraction. Finally, we discuss potential future developments in the field, which would allow the extension of these techniques to more complex cellular processes.

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表面之外的划痕--以最小肌动蛋白组装为工具,阐明机械强化和形状变化。
真核细胞中肌动蛋白细胞骨架与质膜之间的相互作用与形状变化、机械加固和收缩等大量功能密不可分。这些现象是由薄肌动蛋白网络的结构调节驱动的,它通过与各种结合蛋白、膜锚定蛋白和分子马达的相互作用,直接位于膜的下方。要了解驱动这些过程的机制,一种越来越常见的方法是利用重组脂质、肌动蛋白丝和相关的肌动蛋白结合蛋白建立模型系统。在此,我们回顾了这一领域的最新进展,特别强调了肌动蛋白细胞骨架如何提供机械加固、驱动形状变化和诱导收缩。最后,我们将讨论该领域未来的发展潜力,以便将这些技术推广到更复杂的细胞过程中。
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CiteScore
7.70
自引率
0.00%
发文量
94
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