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秀丽隐杆线虫体壁肌肉及肌肉细胞附着结构的组装

Assembly of body wall muscle and muscle cell attachment structures in Caenorhabditis elegans.

作者信息

Hresko M C, Williams B D, Waterston R H

机构信息

Department of Genetics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Cell Biol. 1994 Feb;124(4):491-506. doi: 10.1083/jcb.124.4.491.

Abstract

C. Elegans has four muscle quadrants that are used for locomotion. Contraction is converted to locomotion because muscle cells are anchored to the cuticle (the outer covering of the worm) by a specialized basement membrane and hemidesmosome structures in the hypodermis (a cellular syncytium that covers the worm and secretes the cuticle). To study muscle assembly, we have used antibodies to determine the spatial and temporal distribution of muscle and attachment structure components in wild-type and mutant C. elegans embryos. Myofibrillar components are first observed diffusely distributed in the muscle cells, and are expressed in some dividing cells. Later, the components accumulate at the membrane adjacent to the hypodermis where the sarcomeres will form, showing that the cells have become polarized. Assembly of muscle attachment structures is spatially and temporally coordinated with muscle assembly suggesting that important developmental signals may be passed between muscle and hypodermal cells. Analysis of embryos homozygous for mutations that affect muscle assembly show that muscle components closer to the membrane than the affected protein assemble quite well, while those further from the membrane do not. Our results suggest a model where lattice assembly is initiated at the membrane and the spatial organization of the structural elements of the muscle is dictated by membrane proximal events, not by the filament components themselves.

摘要

秀丽隐杆线虫有四个用于运动的肌肉象限。收缩之所以能转化为运动,是因为肌肉细胞通过皮下组织(一种覆盖线虫并分泌角质层的细胞合体)中的特殊基底膜和半桥粒结构锚定在角质层(线虫的外部覆盖物)上。为了研究肌肉组装,我们使用抗体来确定野生型和突变型秀丽隐杆线虫胚胎中肌肉和附着结构成分的时空分布。肌原纤维成分首先在肌肉细胞中呈弥散分布,并在一些分裂细胞中表达。后来,这些成分在与皮下组织相邻的膜处积累,肌节将在此形成,这表明细胞已发生极化。肌肉附着结构的组装在空间和时间上与肌肉组装协调一致,这表明重要的发育信号可能在肌肉细胞和皮下细胞之间传递。对影响肌肉组装的突变纯合胚胎的分析表明,比受影响蛋白更靠近膜的肌肉成分组装得相当好,而离膜更远的那些成分则不然。我们的结果提出了一个模型,即晶格组装在膜处启动,肌肉结构元件的空间组织由膜近端事件决定,而不是由细丝成分本身决定。

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