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细胞表面蛋白谱分析鉴定出人骨骼肌祖细胞的独特标志物。

Cell-Surface Protein Profiling Identifies Distinctive Markers of Progenitor Cells in Human Skeletal Muscle.

机构信息

Division for Therapies Against Intractable Diseases, Institute for Comprehensive Medical Science, Fujita Health University, 1-98 Dengakugakubo, Kutsukake, Toyoake, Aichi 470-1192, Japan.

Division for Therapies Against Intractable Diseases, Institute for Comprehensive Medical Science, Fujita Health University, 1-98 Dengakugakubo, Kutsukake, Toyoake, Aichi 470-1192, Japan.

出版信息

Stem Cell Reports. 2016 Aug 9;7(2):263-78. doi: 10.1016/j.stemcr.2016.07.004.

Abstract

Skeletal muscle contains two distinct stem/progenitor populations. One is the satellite cell, which acts as a muscle stem cell, and the other is the mesenchymal progenitor, which contributes to muscle pathogeneses such as fat infiltration and fibrosis. Detailed and accurate characterization of these progenitors in humans remains elusive. Here, we performed comprehensive cell-surface protein profiling of the two progenitor populations residing in human skeletal muscle and identified three previously unrecognized markers: CD82 and CD318 for satellite cells and CD201 for mesenchymal progenitors. These markers distinguish myogenic and mesenchymal progenitors, and enable efficient isolation of the two types of progenitors. Functional study revealed that CD82 ensures expansion and preservation of myogenic progenitors by suppressing excessive differentiation, and CD201 signaling favors adipogenesis of mesenchymal progenitors. Thus, cell-surface proteins identified here are not only useful markers but also functionally important molecules, and provide valuable insight into human muscle biology and diseases.

摘要

骨骼肌包含两种不同的干细胞/祖细胞群体。一种是卫星细胞,它作为肌肉干细胞,另一种是间充质祖细胞,它有助于肌肉病变,如脂肪浸润和纤维化。详细准确地描述这些祖细胞在人类中仍然难以捉摸。在这里,我们对存在于人类骨骼肌中的两种祖细胞群体进行了全面的细胞表面蛋白谱分析,并鉴定出三个以前未被识别的标记物:用于卫星细胞的 CD82 和 CD318 以及用于间充质祖细胞的 CD201。这些标记物区分了成肌和间充质祖细胞,并能够有效地分离两种类型的祖细胞。功能研究表明,CD82 通过抑制过度分化来确保成肌祖细胞的扩增和保存,而 CD201 信号有利于间充质祖细胞的脂肪生成。因此,这里鉴定的细胞表面蛋白不仅是有用的标记物,而且是功能上重要的分子,为人类肌肉生物学和疾病提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b72a/4983081/0b2de7340ca8/fx1.jpg

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