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Contractile filament architecture and force transmission in swine airway smooth muscle.

机译:猪气道平滑肌中的收缩细丝结构和力传递。

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摘要

It is well known that the cyclic interaction of myosin cross bridges with actin filaments is responsible for force and shortening generation in smooth muscle. The intracellular organization of contractile filaments, however, is still poorly understood. Here, we show electron microscopic and functional evidence that contractile filaments in airway smooth muscle lie parallel to the longitudinal axis of the cell bundle, in contrast to the obliquely arranged filaments depicted in conventional models. The parallel arrangement of contractile filaments is maintained despite the fact that individual cells are spindle-shaped. This is accomplished through filament attachment to membrane-associated dense plaques that are in turn connected to similar structures on neighboring cells. Intracellularly, the parallel arrangement is maintained despite the centrally located nucleus. This is accomplished by attachment of actin filaments to the nuclear envelope and making the nucleus a force transmitting structure. The results suggest that smooth muscle cells in tissue form a mechanical syncytium and are able to function properly only as a group.
机译:众所周知,肌球蛋白跨桥与肌动蛋白丝的周期性相互作用是造成力和缩短平滑肌产生的原因。然而,对收缩丝的细胞内组织仍然知之甚少。在这里,我们显示了电子显微镜和功能证据,与常规模型中倾斜排列的细丝相反,气道平滑肌中的细丝平行于细胞束的纵轴。尽管单个单元格是纺锤形的事实,但可收缩丝的平行排列得以保持。这是通过将细丝附着到与膜相关的致密斑块上来实现的,这些致密斑块又与相邻细胞上的相似结构相连。在细胞内,尽管核位于中心,但仍保持平行排列。这是通过将肌动蛋白丝附着在核膜上并使核成为力传递结构来实现的。结果表明组织中的平滑肌细胞形成机械合胞体,并且只能作为一个整体正常运行。

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