Department of Cellular and Molecular Medicine, University of Arizona, Tucson, AZ 85721.
Department of Biology, Illinois Institute of Technology, Chicago, IL 60616.
Proc Natl Acad Sci U S A. 2018 Oct 9;115(41):10369-10374. doi: 10.1073/pnas.1804726115. Epub 2018 Sep 24.
Nebulin is a giant sarcomeric protein that spans along the actin filament in skeletal muscle, from the Z-disk to near the thin filament pointed end. Mutations in nebulin cause muscle weakness in nemaline myopathy patients, suggesting that nebulin plays important roles in force generation, yet little is known about nebulin's influence on thin filament structure and function. Here, we used small-angle X-ray diffraction and compared intact muscle deficient in nebulin (using a conditional nebulin-knockout, Neb cKO) with control (Ctrl) muscle. When muscles were activated, the spacing of the actin subunit repeat (27 Å) increased in both genotypes; when converted to thin filament stiffness, the obtained value was 30 pN/nm in Ctrl muscle and 10 pN/nm in Neb cKO muscle; that is, the thin filament was approximately threefold stiffer when nebulin was present. In contrast, the thick filament stiffness was not different between the genotypes. A significantly shorter left-handed (59 Å) thin filament helical pitch was found in passive and contracting Neb cKO muscles, as well as impaired tropomyosin and troponin movement. Additionally, a reduced myosin mass transfer toward the thin filament in contracting Neb cKO muscle was found, suggesting reduced cross-bridge interaction. We conclude that nebulin is critically important for physiological force levels, as it greatly stiffens the skeletal muscle thin filament and contributes to thin filament activation and cross-bridge recruitment.
肌联蛋白是一种巨大的肌节蛋白,沿骨骼肌中的肌动蛋白丝延伸,从 Z 盘延伸到近细丝的末端。肌联蛋白突变会导致杆状体肌病患者肌肉无力,这表明肌联蛋白在产生力方面发挥着重要作用,但我们对肌联蛋白对细丝结构和功能的影响知之甚少。在这里,我们使用小角度 X 射线衍射并比较了缺乏肌联蛋白的完整肌肉(使用条件性肌联蛋白敲除,Neb cKO)与对照(Ctrl)肌肉。当肌肉被激活时,肌动蛋白亚基重复的间隔(27 Å)在两种基因型中都增加了;当转换为细丝刚度时,在 Ctrl 肌肉中获得的值为 30 pN/nm,在 Neb cKO 肌肉中为 10 pN/nm;也就是说,当肌联蛋白存在时,细丝大约变硬了三倍。相比之下,两种基因型之间的粗丝刚度没有差异。在被动和收缩的 Neb cKO 肌肉中发现了明显较短的左手(59 Å)细丝螺旋螺距,以及肌动蛋白和肌钙蛋白运动受损。此外,还发现收缩的 Neb cKO 肌肉中肌球蛋白向细丝的质量转移减少,这表明交联桥相互作用减少。我们得出的结论是,肌联蛋白对于生理力水平至关重要,因为它极大地增加了骨骼肌细丝的刚度,并有助于细丝的激活和交联桥的募集。