Division of Biosciences, College of Dentistry, The Ohio State University, 305 West 12th Avenue, Columbus, OH, 43210, USA.
Arch Biochem Biophys. 2019 Feb 15;662:129-133. doi: 10.1016/j.abb.2018.12.009. Epub 2018 Dec 5.
A central tenet of muscle physiology that has accrued from several decades of intense investigations is that myosin, and the vast set of isoforms that constitute its six subunits, is a major regulator of contractile properties of smooth, cardiac and skeletal muscle. Two frequent questions are (1) how many myosin heavy chain (MyHC) isoforms and myosin light chain (MLC) isoforms are expressed in mammalian striated muscles and (2) which isoforms of MyHC and MLC are expressed, at the protein level, with each other - that is, what patterns of co-expression exist in single striated muscle fibers? The answer to the former question is straightforward: eleven MyHC isoforms and nine MLC isoforms, are expressed in a developmentally-regulated and muscle-specific manner. The answer to the latter question, on the other hand, is not clear-cut. The observed number of MyHC and MLC isoform combinations among single fibers is far less than the total number of potential permutations, indicating strict regulation of expression in individual muscle cells. This article provides a review of the current and still evolving understanding of the complexity of muscle fiber types defined on the basis of expression patterns of MyHC and MLC isoforms that constitute an intact functioning molecule.
肌肉生理学的一个核心原则是,经过几十年的深入研究,肌球蛋白及其六个亚基的庞大同工型系列是调节平滑肌、心肌和骨骼肌收缩特性的主要因素。有两个常见的问题是:(1)哺乳动物横纹肌中表达了多少种肌球蛋白重链(MyHC)同工型和肌球蛋白轻链(MLC)同工型;(2)在蛋白质水平上,哪些 MyHC 和 MLC 同工型相互表达,即存在哪些同工型共表达模式在单个横纹肌纤维中?前一个问题的答案很简单:以发育调控和肌肉特异性方式表达了十一种 MyHC 同工型和九种 MLC 同工型。另一方面,后一个问题的答案并不明确。在单个纤维中观察到的 MyHC 和 MLC 同工型组合数量远远少于潜在的全部排列组合数量,这表明在单个肌肉细胞中表达受到严格调控。本文综述了目前仍在不断发展的对基于完整功能分子的 MyHC 和 MLC 同工型表达模式定义的肌纤维类型复杂性的理解。