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线虫肌肉中斜纹肌结构的力学意义

Mechanical significance of obliquely striated architecture in nematode muscle.

作者信息

Burr A H, Gans C

机构信息

Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia.

出版信息

Biol Bull. 1998 Feb;194(1):1-6. doi: 10.2307/1542507.

Abstract

In certain invertebrate muscles, adjacent narrow columns of sarcomeres are displaced along the fiber axis, providing an obliquely striated myofilament pattern in certain section planes. Although this architecture is described in many phyla and has been the subject of much discussion (1-12), its mechanical significance has yet to be resolved. In nematodes, where ultrastructural details of the obliquely striated muscle have long been known (12-19), another unique and prominent feature is the attachment of every sarcomere to the plasmalemma and basal lamina via dense bodies (Z-disc analogs). Unfortunately, the importance of this feature to the transmission of the contractile force to the cuticle is not understood outside the Caenorhabditis elegans literature: it was overlooked in recent reviews covering obliquely striated muscle (9-11). Here we consider transmission of force and oblique striation together. We compare the contractile architecture in C. elegans with that in the more complex muscle type of larger nematodes. Both types are designed to transmit the force of contraction laterally to the cuticle rather than longitudinally to the muscle ends. In the second type, folding of the contractile structure around an inward extension of the basal lamina enables a higher number of sarcomeres to be linked to cuticle per unit length. We suggest that the mechanical significance of the oblique arrangement of sarcomeres in both types is that it distributes the force application sites of the sarcomeres more evenly over the basal lamina and cuticle. With this muscle architecture, smooth bending of the nematode body tube would be possible, and kinking would be prevented.

摘要

在某些无脊椎动物的肌肉中,相邻的窄肌节柱沿着纤维轴移位,在某些截面中呈现出斜纹肌丝模式。尽管这种结构在许多门中都有描述,并且一直是众多讨论的主题(1 - 12),但其力学意义尚未得到解决。在长期以来已知斜纹肌超微结构细节的线虫中(12 - 19),另一个独特且显著的特征是每个肌节通过致密体(类似Z盘)与质膜和基膜相连。遗憾的是,除了秀丽隐杆线虫的文献外,这种特征对将收缩力传递到角质层的重要性尚不明确:在最近关于斜纹肌的综述中被忽视了(9 - 11)。在此,我们将力的传递和斜纹一起进行考虑。我们将秀丽隐杆线虫的收缩结构与更大线虫的更复杂肌肉类型的收缩结构进行比较。这两种类型的设计都是为了将收缩力横向传递到角质层,而不是纵向传递到肌肉末端。在第二种类型中,收缩结构围绕基膜的向内延伸折叠,使得每单位长度有更多的肌节与角质层相连。我们认为,两种类型中肌节斜向排列的力学意义在于它能将肌节的力作用位点更均匀地分布在基膜和角质层上。有了这种肌肉结构,线虫体管才能实现平滑弯曲,并防止扭结。

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