Tsika R W, Herrick R E, Baldwin K M
Department of Physiology and Biophysics, University of California, Irvine 92717.
J Appl Physiol (1985). 1987 Nov;63(5):2101-10. doi: 10.1152/jappl.1987.63.5.2101.
Three adult skeletal muscle sarcomeric myosin heavy chain (MHC) genes have been identified in the rat, suggesting that the expressed native myosin isoforms can be differentiated, in part, on the basis of their MHC composition. This study was undertaken to ascertain whether the five major native isomyosins [3 fast (Fm1, Fm2, Fm3), 1 slow (Sm), and 1 intermediate (Im)], typically expressed in the spectrum of adult rat skeletal muscles comprising the hindlimb, could be further differentiated on the basis of their MHC profiles in addition to their light chain composition. Results show that in muscles comprised exclusively of fast-twitch glycolytic (FG) fibers and consisting of Fm1, Fm2, and Fm3, such as the tensor fasciae latae, only one MHC, designated as fast type IIb, could be resolved. In soleus muscle, comprised of both slow-twitch oxidative and fast-twitch oxidative-glycolytic fibers and expressing Sm and Im, two MHC bands were resolved and designated as slow/cardiac beta-MHC and fast type IIa MHC. In muscles expressing a mixture of all three fiber types and a full complement of isomyosins, as seen in the plantaris, the MHC could be resolved into three bands. Light chain profiles were characterized for each muscle type, as well as for the purified isomyosins. These data suggest that Im (IIa) consists of a mixture of fast and slow light chains, whereas Fm (IIb) and Sm (beta) isoforms consist solely of fast- and slow-type light chains, respectively. Polypeptide mapping of denatured myosin extracted from muscles expressing contrasting isoform phenotypes suggests differences in the MHC primary structure between slow, intermediate, and fast myosin isotypes. These findings demonstrate that 1) Fm, Im, and Sm isoforms are differentiated on the bases of both their heavy and light chain components and 2) each isomyosin is distributed in a characteristic fashion among rat hindlimb skeletal muscles. Furthermore, these data suggest that the ratio of isomyosins in a given muscle or muscle region is of physiological importance to the function of that muscle during muscular activity.
在大鼠中已鉴定出三种成年骨骼肌肌节肌球蛋白重链(MHC)基因,这表明所表达的天然肌球蛋白同工型在一定程度上可根据其MHC组成来区分。本研究旨在确定在成年大鼠后肢骨骼肌中典型表达的五种主要天然同工肌球蛋白[3种快肌型(Fm1、Fm2、Fm3)、1种慢肌型(Sm)和1种中间型(Im)],除了其轻链组成外,是否还能根据其MHC谱进一步区分。结果表明,在仅由快肌糖酵解(FG)纤维组成且包含Fm1、Fm2和Fm3的肌肉中,如阔筋膜张肌,只能分辨出一种MHC,命名为快肌IIb型。在比目鱼肌中,由慢肌氧化纤维和快肌氧化糖酵解纤维组成且表达Sm和Im,分辨出两条MHC带,分别命名为慢肌/心肌β-MHC和快肌IIa型MHC。在如跖肌中表达所有三种纤维类型混合物和完整同工肌球蛋白的肌肉中,MHC可分辨为三条带。对每种肌肉类型以及纯化的同工肌球蛋白的轻链谱进行了表征。这些数据表明,Im(IIa)由快肌和慢肌轻链的混合物组成,而Fm(IIb)和Sm(β)同工型分别仅由快肌型和慢肌型轻链组成。从表达对比同工型表型的肌肉中提取的变性肌球蛋白的多肽图谱表明,慢肌、中间肌和快肌肌球蛋白同种型之间的MHC一级结构存在差异。这些发现表明:1)Fm、Im和Sm同工型在重链和轻链成分上均有差异;2)每种同工肌球蛋白以特征性方式分布于大鼠后肢骨骼肌中。此外,这些数据表明,给定肌肉或肌肉区域中同工肌球蛋白的比例对该肌肉在肌肉活动期间的功能具有生理重要性。