School of Life Sciences, Arizona State University, Tempe, Arizona, United States.
College of Integrative Sciences and Arts, Arizona State University, Tempe, Arizona, United States.
Am J Physiol Endocrinol Metab. 2023 Dec 1;325(6):E723-E733. doi: 10.1152/ajpendo.00190.2023. Epub 2023 Oct 25.
The proportion of the different types of fibers in a given skeletal muscle contributes to its overall metabolic and functional characteristics. Greater proportion of type I muscle fibers is associated with favorable oxidative metabolism and function of the muscle. Humans with obesity have a lower proportion of type I muscle fibers. We discuss how lower proportion of type I fibers in skeletal muscle of humans with obesity may explain metabolic and functional abnormalities reported in these individuals. These include lower muscle glucose disposal rate, mitochondrial content, protein synthesis, and quality/contractile function, as well as increased risk for heart disease, lower levels of physical activity, and propensity for weight gain/resistance to weight loss. We delineate future research directions and the need to examine hybrid muscle fiber populations, which are indicative of a transitory state of fiber phenotype within skeletal muscle. We also describe methodologies for precisely characterizing muscle fibers and gene expression at the single muscle fiber level to enhance our understanding of the regulation of muscle fiber phenotype in obesity. By contextualizing research in the field of muscle fiber type in obesity, we lay a foundation for future advancements and pave the way for translation of this knowledge to address impaired metabolism and function in obesity.
在给定的骨骼肌中,不同类型纤维的比例决定了其整体代谢和功能特征。Ⅰ型肌纤维比例较高与肌肉的有利氧化代谢和功能相关。肥胖人群中Ⅰ型肌纤维的比例较低。我们讨论了肥胖人群骨骼肌中Ⅰ型纤维比例降低如何解释这些人群中报告的代谢和功能异常。这些异常包括肌肉葡萄糖摄取率、线粒体含量、蛋白质合成和质量/收缩功能降低,以及心脏病风险增加、体力活动水平降低和体重增加/减肥抵抗的倾向。我们描述了未来的研究方向,需要检查混合肌纤维群体,这表明骨骼肌内纤维表型的短暂状态。我们还描述了精确描述肌肉纤维和单个肌肉纤维水平上基因表达的方法,以增强我们对肥胖中肌肉纤维表型调控的理解。通过将肥胖肌肉纤维类型领域的研究置于上下文中,为未来的进展奠定了基础,并为将这一知识转化为解决肥胖代谢和功能障碍铺平了道路。