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微管和肌动蛋白细胞骨架对直接细胞内负荷的结构响应。

Structural response of microtubule and actin cytoskeletons to direct intracellular load.

机构信息

Department of Science, Yokohama City University, Yokohama, Japan.

出版信息

J Cell Biol. 2025 Feb 3;224(2). doi: 10.1083/jcb.202403136. Epub 2024 Nov 15.

Abstract

Microtubule and actin are the two major cytoskeletal polymers that form organized functional structures in the interior of eukaryotic cells. Although the structural mechanics of the cytoskeleton has been extensively studied by direct manipulations in in vitro reconstitution systems, such unambiguous characterizations inside the living cell are sparse. Here, we report a comprehensive analysis of how the microtubule and actin cytoskeletons structurally respond to direct intracellular load. Ferrofluid-based intracellular magnetic tweezers reveal rheological properties of the microtubule complex primarily determined by filamentous actin. The strain fields of the microtubule complex and actin meshwork follow the same scaling, suggesting that the two cytoskeletal systems behave as an integrated elastic body. The structural responses of single microtubules to contact and remote forces further evidence that the individual microtubules are enclosed by the elastic medium of actin. These results, directly characterizing the microtubule and actin cytoskeletons as an interacting continuum throughout the cytoplasm, serve as a cornerstone for the physical understanding of intracellular organization.

摘要

微管和肌动蛋白是真核细胞内形成有组织功能结构的两种主要细胞骨架聚合物。尽管细胞骨架的结构力学已经通过体外重建系统的直接操作得到了广泛研究,但在活细胞内进行这种明确的特征描述却很少见。在这里,我们报告了一项关于微管和肌动蛋白细胞骨架如何对细胞内直接负载进行结构响应的综合分析。基于铁磁流体的细胞内磁镊揭示了微管复合物的流变特性,主要由丝状肌动蛋白决定。微管复合物和肌动蛋白网格的应变场遵循相同的标度,表明这两个细胞骨架系统表现为一个集成的弹性体。单个微管对接触和远程力的结构响应进一步证明,单个微管被肌动蛋白的弹性介质所包围。这些结果直接将微管和肌动蛋白细胞骨架描述为整个细胞质中相互作用的连续体,为细胞内组织的物理理解奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6de/11572716/4174707b6464/JCB_202403136_Fig1.jpg

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