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肌球蛋白在破骨细胞形成和功能中的作用。

Myosins in Osteoclast Formation and Function.

机构信息

Department of Physiology and Cell Biology, The Ohio State University College of Medicine, 304 Hamilton Hall, 1645 Neil Avenue, Columbus, OH 43210, USA.

出版信息

Biomolecules. 2018 Nov 22;8(4):157. doi: 10.3390/biom8040157.

Abstract

Skeletal quantity and quality are determined by processes of bone modeling and remodeling, which are undertaken by cells that build and resorb bone as they respond to mechanical, hormonal, and other external and internal signals. As the sole bone resorptive cell type, osteoclasts possess a remarkably dynamic actin cytoskeleton that drives their function in this enterprise. Actin rearrangements guide osteoclasts' capacity for precursor fusion during differentiation, for migration across bone surfaces and sensing of their composition, and for generation of unique actin superstructures required for the resorptive process. In this regard, it is not surprising that myosins, the superfamily of actin-based motor proteins, play key roles in osteoclast physiology. This review briefly summarizes current knowledge of the osteoclast actin cytoskeleton and describes myosins' roles in osteoclast differentiation, migration, and actin superstructure patterning.

摘要

骨骼的数量和质量由骨形成和骨重建过程决定,这些过程由细胞进行,这些细胞在响应机械、激素和其他内外信号时构建和吸收骨骼。作为唯一的骨吸收细胞类型,破骨细胞具有非常动态的肌动蛋白细胞骨架,驱动其在这一过程中的功能。肌动蛋白重排指导破骨细胞在分化过程中进行前体融合的能力,指导其在骨骼表面迁移和感知其组成的能力,以及指导其生成用于吸收过程的独特肌动蛋白超结构的能力。在这方面,肌球蛋白(肌动蛋白基马达蛋白的超家族)在破骨细胞生理学中发挥关键作用并不奇怪。这篇综述简要总结了破骨细胞肌动蛋白细胞骨架的现有知识,并描述了肌球蛋白在破骨细胞分化、迁移和肌动蛋白超结构模式形成中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b22/6317158/38c1fd7c5dac/biomolecules-08-00157-g001.jpg

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