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骨骼肌纤维类型的多样性。

The Diversity of Skeletal Muscle Fiber Types.

作者信息

Schiaffino Stefano, Chemello Francesco, Reggiani Carlo

机构信息

Veneto Institute of Molecular Medicine (VIMM), 35129 Padova, Italy

Department of Pharmacy and Biotechnology, University of Bologna, 40126 Bologna, Italy.

出版信息

Cold Spring Harb Perspect Biol. 2024 Aug 12. doi: 10.1101/cshperspect.a041477.

Abstract

The widespread presence of slow-red and fast-white muscles in all vertebrates supports the evolutionary advantage of having two types of motors available for animal movement-a slow economical motor used for most activities, and a fast energetically costly motor used for rapid movements and emergency actions, and actions that require a lot of force. Skeletal muscles are composed of multiple fiber types whose structural and functional properties have only in part been characterized. Further progress in this field is mainly occurring along two directions: Multiomics approaches are providing a global picture of the molecular composition of muscle fibers up to the single fiber and single nucleus level. Signaling studies are identifying many transcription factors and pathways controlling fiber-type specification. These new data should now be integrated into a wider whole-body context by defining the matching between muscle fiber and motor neuron heterogeneity in the neuromuscular system, as well as the relevance of muscle fiber types in systemic homeostatic functions, including metabolism and thermogenesis.

摘要

慢红肌和快白肌在所有脊椎动物中的广泛存在,支持了拥有两种类型的运动机制以用于动物运动的进化优势——一种用于大多数活动的经济型慢运动机制,以及一种用于快速运动、应急行动和需要大量力量的行动的耗能型快运动机制。骨骼肌由多种纤维类型组成,其结构和功能特性仅部分得到了表征。该领域的进一步进展主要沿着两个方向进行:多组学方法正在提供肌肉纤维分子组成的全局图景,直至单纤维和单核水平。信号研究正在识别许多控制纤维类型特化的转录因子和信号通路。现在,这些新数据应通过定义神经肌肉系统中肌肉纤维与运动神经元异质性之间的匹配关系,以及肌肉纤维类型在包括新陈代谢和产热在内的全身稳态功能中的相关性,整合到更广泛的全身背景中。

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