肌肉干细胞的细胞外基质生态位

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology
Current Topics in Developmental Biology Pub Date : 2024-01-01 Epub Date: 2024-02-28 DOI:10.1016/bs.ctdb.2024.01.021
Eleni Chrysostomou, Philippos Mourikis
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引用次数: 0

摘要

在成人组织中保持干细胞的活力要求很高,有赖于各种细胞和非细胞元素以精确的比例协同作用。这种平衡的微环境存在于组织内特定的解剖学 "口袋 "中,即干细胞生态位。在这篇综述中,我们探讨了干细胞及其龛位之间的相互作用,主要侧重于骨骼肌干细胞和细胞外基质(ECM)。被称为卫星细胞的静止肌肉干细胞是多种ECM分子的活跃制造者,包括胶原蛋白、层粘连蛋白和整合素等主要成分,本综述将探讨其中一些成分。传统观念认为 ECM 只是一种结构支架,这种观念正在发生变化。胶原蛋白可作为配体与卫星细胞上的受体直接相互作用,而其他 ECM 蛋白则有能力封存生长因子并调节其释放,这与卫星细胞在平衡状态下的更替或损伤时的激活尤为相关。此外,我们还从进化的角度探讨了一系列多细胞生物体中的 ECM,并讨论了卫星细胞通过生成自己的生态位来自我维持的模型。考虑到 ECM 蛋白在各种器官的结缔组织中普遍存在,ECM 基因突变具有病理影响也就不足为奇了,包括在肌肉中,突变可导致肌病。然而,某些与疾病相关的ECM蛋白在干细胞维持中的特殊作用,凸显了干细胞失调对这些疾病进展的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The extracellular matrix niche of muscle stem cells.

Preserving the potency of stem cells in adult tissues is very demanding and relies on the concerted action of various cellular and non-cellular elements in a precise stoichiometry. This balanced microenvironment is found in specific anatomical "pockets" within the tissue, known as the stem cell niche. In this review, we explore the interplay between stem cells and their niches, with a primary focus on skeletal muscle stem cells and the extracellular matrix (ECM). Quiescent muscle stem cells, known as satellite cells are active producers of a diverse array of ECM molecules, encompassing major constituents like collagens, laminins, and integrins, some of which are explored in this review. The conventional perception of ECM as merely a structural scaffold is evolving. Collagens can directly interact as ligands with receptors on satellite cells, while other ECM proteins have the capacity to sequester growth factors and regulate their release, especially relevant during satellite cell turnover in homeostasis or activation upon injury. Additionally, we explore an evolutionary perspective on the ECM across a range of multicellular organisms and discuss a model wherein satellite cells are self-sustained by generating their own niche. Considering the prevalence of ECM proteins in the connective tissue of various organs it is not surprising that mutations in ECM genes have pathological implications, including in muscle, where they can lead to myopathies. However, the particular role of certain disease-related ECM proteins in stem cell maintenance highlights the potential contribution of stem cell deregulation to the progression of these disorders.

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来源期刊
CiteScore
6.00
自引率
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发文量
91
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