Biology Department, State University of New York at Fredonia, Fredonia, NY 14063, USA
J Exp Biol. 2019 Nov 29;222(Pt 23):jeb200832. doi: 10.1242/jeb.200832.
Skeletal muscle fibers are classified according to the myosin heavy chain (MHC) isoforms and other myofibrillar proteins expressed within these cells. In addition to 'pure' fibers expressing single MHC isoforms, many fibers are 'hybrids' that co-express two or more different isoforms of MHC or other myofibrillar proteins. Although hybrid fibers have been recognized by muscle biologists for more than three decades, uncertainty persists about their prevalence in normal muscles, their role in fiber-type transitions, and what they might tell us about fiber-type regulation at the cellular and molecular levels. This Review summarizes current knowledge on the relative abundance of hybrid fibers in a variety of muscles from different species. Data from more than 150 muscles from 39 species demonstrate that hybrid fibers are common, frequently representing 25% or more of the fibers in normal muscles. Hybrid fibers appear to have two main roles: (1) they function as intermediates during the fiber-type transitions associated with skeletal muscle development, adaptation to exercise and aging; and (2) they provide a functional continuum of fiber phenotypes, as they possess physiological properties that are intermediate to those of pure fiber types. One aspect of hybrid fibers that is not widely recognized is that fiber-type asymmetries - such as dramatic differences in the MHC composition along the length of single fibers - appear to be a common aspect of many fibers. The final section of this Review examines the possible role of differential activities of nuclei in different myonuclear domains in establishing fiber-type asymmetries.
骨骼肌纤维根据肌球蛋白重链 (MHC) 同工型和这些细胞内表达的其他肌球蛋白蛋白进行分类。除了表达单一 MHC 同工型的“纯纤维”外,许多纤维是“杂交纤维”,它们共同表达两种或更多不同的 MHC 同工型或其他肌球蛋白蛋白。尽管杂交纤维已经被肌肉生物学家认识了三十多年,但它们在正常肌肉中的普遍程度、在纤维型转变中的作用以及它们在细胞和分子水平上对纤维型调节的意义仍存在不确定性。这篇综述总结了关于各种物种不同肌肉中杂交纤维相对丰度的最新知识。来自 39 个物种的 150 多个肌肉的数据表明,杂交纤维很常见,通常代表正常肌肉中纤维的 25%或更多。杂交纤维似乎有两个主要作用:(1) 它们在与骨骼肌发育、运动适应和衰老相关的纤维型转变中作为中间产物发挥作用;(2) 它们提供了一种纤维表型的功能连续体,因为它们具有介于纯纤维类型之间的生理特性。杂交纤维的一个不被广泛认识的方面是,纤维型不对称性——例如,单根纤维长度上 MHC 组成的巨大差异——似乎是许多纤维的一个常见特征。这篇综述的最后一部分探讨了不同肌核在不同肌核域中的不同活性在建立纤维型不对称性方面的可能作用。