Department of Molecular, Cellular, and Developmental Biology, BioFrontiers Institute, University of Colorado Boulder, 3415 Colorado Ave., UCB596, Boulder, CO 80303, USA.
Department of Molecular, Cellular, and Developmental Biology, BioFrontiers Institute, University of Colorado Boulder, 3415 Colorado Ave., UCB596, Boulder, CO 80303, USA
J Cell Sci. 2020 Aug 11;133(15):jcs243162. doi: 10.1242/jcs.243162.
Striated muscle is a highly specialized collection of tissues with contractile properties that vary according to functional needs. Although muscle fiber types are established postnatally, lifelong plasticity facilitates stimulus-dependent adaptation. Functional adaptation requires molecular adaptation, which is partially provided by miRNA-mediated post-transcriptional regulation. miR-206 is a muscle-specific miRNA enriched in slow muscles. We investigated whether miR-206 drives the slow muscle phenotype or is merely an outcome. We found that miR-206 expression increases in both physiological (including female sex and endurance exercise) and pathological conditions (muscular dystrophy and adrenergic agonism) that promote a slow phenotype. Consistent with that observation, the slow soleus muscle of male miR-206-knockout mice displays a faster phenotype than wild-type mice. Moreover, left ventricles of male miR-206 knockout mice have a faster myosin profile, accompanied by dilation and systolic dysfunction. Thus, miR-206 appears to be necessary to enforce a slow skeletal and cardiac muscle phenotype and to play a key role in muscle sexual dimorphisms.
横纹肌是一种高度特化的组织集合,具有根据功能需求变化的收缩特性。尽管肌肉纤维类型在出生后就已确定,但终生的可塑性促进了刺激依赖性的适应。功能适应需要分子适应,这部分由 miRNA 介导的转录后调控提供。miR-206 是一种在慢肌中丰富的肌肉特异性 miRNA。我们研究了 miR-206 是否驱动慢肌表型,还是仅仅是一种结果。我们发现,miR-206 的表达在促进慢肌表型的生理条件(包括女性性别和耐力运动)和病理条件(肌肉营养不良和肾上腺素激动剂作用)下均增加。与该观察结果一致,雄性 miR-206 敲除小鼠的慢缩肌比野生型小鼠具有更快的表型。此外,雄性 miR-206 敲除小鼠的左心室具有更快的肌球蛋白图谱,伴有扩张和收缩功能障碍。因此,miR-206 似乎是强制执行慢骨骼肌和心肌表型所必需的,并且在肌肉性别二态性中发挥关键作用。