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Myosin and paramyosin of Caenorhabditis elegans embryos assemble into nascent structures distinct from thick filaments and multi-filament assemblages

机译:秀丽隐杆线虫胚胎的肌球蛋白和副肌球蛋白组装成新生的结构不同于粗细丝和多细丝组合

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摘要

The organization of myosin heavy chains (mhc) A and B and paramyosin (pm) which are the major proteins of thick filaments in adult wild-type Caenorhabditis elegans were studied during embryonic development. As a probe of myosin-paramyosin interaction, the unc-15 mutation e73 which produces a glu342lys charge change in pm and leads to the formation of large paracrystalline multi-filament assemblages was compared to wild type. These three proteins colocalized in wild-type embryos from 300 to 550 min of development after first cleavage at 20 degrees C on the basis of immunofluorescence microscopy using specific monoclonal antibodies. Linear structures which were diversely oriented around the muscle cell peripheries appeared at 360 min and became progressively more aligned parallel to the embryonic long axis until distinct myofibrils were formed at 550 min. In the mutant, mhc A and pm were colocalized in the linear structures, but became progressively separated until they showed no spatial overlap at the myofibril stage. These results indicate that the linear structures represent nascent assemblies containing myosin and pm in which the proteins interact differently than in wild-type thick filaments of myofibrils. In e73, these nascent structures were distinct from the multi-filament assemblages. The overlapping of actin and mhc A in the nascent linear structures suggests their possible structural and functional relationship to the "stress fiber-like structures" of cultured vertebrate muscle cells.
机译:在胚胎发育过程中,研究了成年野生型秀丽隐杆线虫中细丝的主要蛋白质-肌球蛋白重链(mhc)A和B以及副肌球蛋白(pm)的组织。作为肌球蛋白-副肌球蛋白相互作用的探针,与野生型相比,unc-15突变e73产生了pmlu处的glu342lys电荷变化,并导致形成了较大的副晶多丝组件。在使用特异性单克隆抗体进行的免疫荧光显微镜检查的基础上,在20摄氏度下首次裂解后,这三种蛋白质在300至550分钟的发育过程中共定位于野生型胚胎中。在360分钟时出现围绕肌肉细胞周围不同方向的线性结构,并逐渐平行于胚胎长轴逐渐排列,直到在550分钟时形成独特的肌原纤维为止。在突变体中,mhc A和pm在线性结构中共定位,但逐渐分离,直到在肌原纤维阶段没有空间重叠。这些结果表明,线性结构代表了含有肌球蛋白和pm的新生装配体,其中的蛋白质相互作用与肌原纤维的野生型粗丝不同。在e73中,这些新生结构不同于多丝组合。肌动蛋白和mhc A在新生的线性结构中的重叠表明它们可能与培养的脊椎动物肌肉细胞的“应力纤维样结构”具有可能的结构和功能关系。

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