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感受力量:机械传感中的足体

Feel the force: Podosomes in mechanosensing.

作者信息

Linder Stefan, Wiesner Christiane

机构信息

Institut für medizinische Mikrobiologie, Virologie und Hygiene, Universitätsklinikum Eppendorf, Martinistr. 52, 20246 Hamburg, Germany.

Institut für medizinische Mikrobiologie, Virologie und Hygiene, Universitätsklinikum Eppendorf, Martinistr. 52, 20246 Hamburg, Germany.

出版信息

Exp Cell Res. 2016 Apr 10;343(1):67-72. doi: 10.1016/j.yexcr.2015.11.026. Epub 2015 Nov 30.

Abstract

Cells interact with their environment through highly localized contact structures. Podosomes represent a subgroup of cell-matrix contacts, which is especially prominent in cells of the monocytic lineage such as monocytes, macrophages and dendritic cells, but also in a variety of other cell types. Comparable to other adhesion structures, podosomes feature a complex architecture, which forms the basis for their extensive repertoire of sensory and effector functions. These functions are mainly linked to interactions with the extracellular matrix and comprise well known properties such as cell-matrix adhesion and extracellular matrix degradation. A more recent discovery is the ability of podosomes to act as mechanosensory devices, by detecting rigidity and topography of the substratum. In this review, we focus especially on the molecular events involved in mechanosensing by podosomes, the structural elements of podosomes that enable this function, as well as the intra- and extracellular signals generated downstream of podosome mechanosensing.

摘要

细胞通过高度局部化的接触结构与周围环境相互作用。足体是细胞与基质接触的一个亚群,在单核细胞谱系的细胞(如单核细胞、巨噬细胞和树突状细胞)中尤为突出,但在多种其他细胞类型中也存在。与其他粘附结构类似,足体具有复杂的结构,这构成了其广泛的传感和效应功能的基础。这些功能主要与细胞外基质的相互作用有关,包括细胞与基质粘附和细胞外基质降解等众所周知的特性。最近的一项发现是,足体能够通过检测底物的硬度和拓扑结构,充当机械传感装置。在这篇综述中,我们特别关注足体机械传感所涉及的分子事件、实现该功能的足体结构元件,以及足体机械传感下游产生的细胞内和细胞外信号。

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