Ojima Koichi, Oe Mika, Nakajima Ikuyo, Shibata Masahiro, Muroya Susumu, Chikuni Koichi, Hattori Akihito, Nishimura Takanori
Animal Products Research Division, Institute of Livestock and Grassland Science, NARO, Tsukuba, Japan.
Anim Sci J. 2015 Apr;86(4):459-67. doi: 10.1111/asj.12310. Epub 2014 Nov 20.
In skeletal muscle cells, myofibrillar proteins are highly organized into sarcomeres in which thick filaments interdigitate with thin filaments to generate contractile force. The size of thick filaments, which consist mainly of myosin molecules, is strictly controlled. However, little is known about the mechanisms by which myosin molecules assemble into thick filaments. Here, we assessed the ability of each domain of myosin heavy chain (Myh) to form thick filaments. We showed that exogenously expressed subfragment 2 (S2) + light meromyosin (LMM) of Myh was efficiently incorporated into thick filaments in muscle cells, although neither solely expressed S2 nor LMM targeted to thick filaments properly. In nonmuscle COS7 cells, S2+LMM formed more enlarged filaments/speckles than LMM. These results suggest that Myh filament formation is induced by S2 accompanying LMM. We further examined the effects of Myh C-terminus on thick filament assembly. C-terminal deletion mutants were incorporated not into entire thick filaments but rather into restricted regions of thick filaments. Our findings suggest that the elongation of myosin filaments to form thick filaments is regulated by S2 as well as C-terminus of LMM.
在骨骼肌细胞中,肌原纤维蛋白高度组织成肌节,其中粗肌丝与细肌丝相互交错以产生收缩力。主要由肌球蛋白分子组成的粗肌丝的大小受到严格控制。然而,关于肌球蛋白分子组装成粗肌丝的机制知之甚少。在这里,我们评估了肌球蛋白重链(Myh)每个结构域形成粗肌丝的能力。我们发现,外源性表达的Myh的亚片段2(S2)+轻酶解肌球蛋白(LMM)能有效地整合到肌肉细胞的粗肌丝中,尽管单独表达的S2或LMM都不能正确地靶向粗肌丝。在非肌肉COS7细胞中,S2+LMM比LMM形成更大的细丝/斑点。这些结果表明,Myh细丝的形成是由伴随LMM的S2诱导的。我们进一步研究了Myh C末端对粗肌丝组装的影响。C末端缺失突变体没有整合到整个粗肌丝中,而是整合到粗肌丝的特定区域。我们的研究结果表明,肌球蛋白细丝延伸形成粗肌丝是由S2以及LMM的C末端调节的。