Gokhin David S, Bang Marie-Louise, Zhang Jianlin, Chen Ju, Lieber Richard L
Dept. of Orthopaedic Surgery, University of California-San Diego and Veterans Affairs Medical Center, San Diego, CA 92161, USA.
Am J Physiol Cell Physiol. 2009 May;296(5):C1123-32. doi: 10.1152/ajpcell.00503.2008. Epub 2009 Mar 18.
Nebulin (NEB) is a large, rod-like protein believed to dictate actin thin filament length in skeletal muscle. NEB gene defects are associated with congenital nemaline myopathy. The functional role of NEB was investigated in gastrocnemius muscles from neonatal wild-type (WT) and NEB knockout (NEB-KO) mice, whose thin filaments have uniformly shorter lengths compared with WT mice. Isometric stress production in NEB-KO skeletal muscle was reduced by 27% compared with WT skeletal muscle on postnatal day 1 and by 92% on postnatal day 7, consistent with functionally severe myopathy. NEB-KO muscle was also more susceptible to a decline in stress production during a bout of 10 cyclic isometric tetani. Length-tension properties in NEB-KO muscle were altered in a manner consistent with reduced thin filament length, with length-tension curves from NEB-KO muscle demonstrating a 7.4% narrower functional range and an optimal length reduced by 0.13 muscle lengths. Expression patterns of myosin heavy chain isoforms and total myosin content did not account for the functional differences between WT and NEB-KO muscle. These data indicate that NEB is essential for active stress production, maintenance of functional integrity during cyclic activation, and length-tension properties consistent with a role in specifying normal thin filament length. Continued analysis of NEB's functional properties will strengthen the understanding of force transmission and thin filament length regulation in skeletal muscle and may provide insights into the molecular processes that give rise to nemaline myopathy.
伴肌动蛋白(NEB)是一种大型的杆状蛋白质,被认为在骨骼肌中决定肌动蛋白细肌丝的长度。NEB基因缺陷与先天性杆状体肌病相关。在新生野生型(WT)和NEB基因敲除(NEB-KO)小鼠的腓肠肌中研究了NEB的功能作用,与WT小鼠相比,NEB-KO小鼠的细肌丝长度均一性较短。出生后第1天,NEB-KO骨骼肌的等长应力产生比WT骨骼肌降低了27%,出生后第7天降低了92%,这与功能严重的肌病一致。在10次循环等长强直收缩期间,NEB-KO肌肉对应力产生下降也更敏感。NEB-KO肌肉的长度-张力特性以与细肌丝长度减少一致的方式改变,NEB-KO肌肉的长度-张力曲线显示功能范围窄7.4%,最佳长度减少0.13个肌节长度。肌球蛋白重链异构体的表达模式和总肌球蛋白含量并不能解释WT和NEB-KO肌肉之间的功能差异。这些数据表明,NEB对于主动应力产生、循环激活期间功能完整性的维持以及与确定正常细肌丝长度作用一致的长度-张力特性至关重要。对NEB功能特性的持续分析将加强对骨骼肌中力传递和细肌丝长度调节的理解,并可能为导致杆状体肌病的分子过程提供见解。