Chen Lin, Pan Yaxong, Cheng Jia, Zhu Xin, Chu Wuying, Meng Yang Yang, Bin Shiyu, Zhang Jianshe
College of Biological and Chemical Engineering, Changsha University, Hunan 410003, China.
Department of Biology, Guangxi Normal University, Guilin 419034, Guangxi, China.
Int J Biol Macromol. 2023 Oct 1;250:125907. doi: 10.1016/j.ijbiomac.2023.125907. Epub 2023 Jul 22.
Fish skeletal muscle is composed of two anatomically and functionally different fiber layers, white or fast and red or slow muscles. Myosin, the major structural protein of fish skeletal muscle, contains multiple myosin heavy chain (MYH) isoforms involved in the high plasticity of muscle in response to varying functional demands and/or environmental changes. In this study, we comparatively assayed the cellular and ultrastructural feature of white and red skeletal muscles. Then, a total of 28 class II myosin heavy chain genes were identified in by searching the Chinese perch genome database. Among them, 14 genes code for the fast-muscle-type myosin heavy chain, and 7 genes code for the slow-muscle-type myosin heavy chain. Further, the different isoform gene structures, function domains, phylogenetic relations, and muscle-fiber type-specific expression were characterized. This is the first systematic work on the molecular characterization of class II myosin heavy chain isoforms and the differential analysis of their expression in red and white muscle tissues in Chinese perch Siniperca chuatsi. Our work provided valuable information for a better understanding of myh genes and their molecular characteristics, and the correlations of multiple myosin isoforms with potential functions in response to varying functional demands and/or environmental changes.
鱼类骨骼肌由两个在解剖学和功能上不同的纤维层组成,即白色或快肌纤维层和红色或慢肌纤维层。肌球蛋白是鱼类骨骼肌的主要结构蛋白,包含多个肌球蛋白重链(MYH)亚型,这些亚型参与了肌肉在响应不同功能需求和/或环境变化时的高可塑性。在本研究中,我们比较分析了白色和红色骨骼肌的细胞和超微结构特征。然后,通过搜索中国鲈基因组数据库,共鉴定出28个II类肌球蛋白重链基因。其中,14个基因编码快肌型肌球蛋白重链,7个基因编码慢肌型肌球蛋白重链。此外,还对不同亚型基因的结构、功能域、系统发育关系以及肌纤维类型特异性表达进行了表征。这是首次对中国鲈II类肌球蛋白重链亚型进行分子表征以及对其在红色和白色肌肉组织中表达差异进行分析的系统性工作。我们的工作为更好地理解myh基因及其分子特征,以及多种肌球蛋白亚型与响应不同功能需求和/或环境变化的潜在功能之间的相关性提供了有价值的信息。