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监测肌肉干细胞中的自噬

Monitoring Autophagy in Muscle Stem Cells.

作者信息

García-Prat Laura, Muñoz-Cánoves Pura, Martínez-Vicente Marta

机构信息

Cell Biology Group, Department of Experimental and Health Sciences, Pompeu Fabra University (UPF), CIBER on Neurodegenerative diseases (CIBERNED), Barcelona, Spain.

Tissue Regeneration Laboratory. Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.

出版信息

Methods Mol Biol. 2017;1556:255-280. doi: 10.1007/978-1-4939-6771-1_14.

Abstract

Autophagy is critical not only for the cell's adaptive response to starvation but also for cellular homeostasis, by acting as quality-control machinery for cytoplasmic components. This basal autophagic activity is particularly needed in postmitotic cells for survival maintenance. Recently, basal autophagic activity was reported in skeletal muscle stem cells (satellite cells) in their dormant quiescent state. Satellite cells are responsible for growth as well as for regeneration of muscle in response to stresses such as injury or disease. In the absence of stress, quiescence is the stem cell state of these cells throughout life, although which mechanisms maintain long-life quiescence remains largely unknown. Our recent findings showed that autophagy is necessary for quiescence maintenance in satellite cells and for retention of their regenerative functions. Importantly, damaged organelles and proteins accumulated in these cells with aging and this was connected to age-associated defective autophagy. Refueling of autophagy through genetic and pharmacological strategies restored aged satellite cell functions, and these finding have biomedical implications. In this chapter, we describe different experimental strategies to evaluate autophagic activity in satellite cells in resting muscle of mice. They should facilitate our competence to investigate stem cell functions both during tissue homeostasis as in pathological conditions.

摘要

自噬不仅对细胞对饥饿的适应性反应至关重要,而且通过作为细胞质成分的质量控制机制,对细胞内稳态也至关重要。这种基础自噬活性在有丝分裂后细胞中维持生存尤其必要。最近,有报道称骨骼肌干细胞(卫星细胞)在其静止休眠状态下存在基础自噬活性。卫星细胞负责肌肉的生长以及对损伤或疾病等应激作出反应时的肌肉再生。在没有应激的情况下,静止是这些细胞一生中的干细胞状态,尽管维持长期静止的机制在很大程度上仍不清楚。我们最近的研究结果表明,自噬对于卫星细胞的静止维持及其再生功能的保留是必要的。重要的是,随着衰老,这些细胞中受损的细胞器和蛋白质会积累,这与年龄相关的自噬缺陷有关。通过基因和药理学策略恢复自噬可恢复衰老卫星细胞的功能,这些发现具有生物医学意义。在本章中,我们描述了评估小鼠静息肌肉中卫星细胞自噬活性的不同实验策略。它们应有助于我们在组织内稳态以及病理条件下研究干细胞功能的能力。

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