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轴丝成分在纤毛运动中的作用。

The role of axonemal components in ciliary motility.

作者信息

Satir P

机构信息

Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, Bronx, NY 10461.

出版信息

Comp Biochem Physiol A Comp Physiol. 1989;94(2):351-7. doi: 10.1016/0300-9629(89)90558-6.

Abstract
  1. The axoneme is the detergent-insoluble cytoskeleton of the cilium. 2. All axonemes generate movement by the same fundamental mechanism: microtubule sliding utilizing ATP hydrolysis during a mechanochemical cycling of dynein arms on the axonemal doublets. 3. Structure, fundamental biochemistry and physiology of the axoneme are conserved evolutionarily, but the phenotypes of beating movements and the responses to specific cytoplasmic signals differ greatly from organism to organism. 4. A model of asynchronous dynein arm activity--the switch point hypothesis--has been proposed to account for cyclic beating in the face of unidirectional sliding. The model suggests that the diversity of beat phenotype may be explicable by changes in the timing of switching between active and inactive states of doublet arm activity. Evidence of axonemal splitting in arrested axonemes provides new support for the hypothesis.
摘要
  1. 轴丝是纤毛中不溶于去污剂的细胞骨架。2. 所有轴丝都通过相同的基本机制产生运动:在轴丝双联体上动力蛋白臂的机械化学循环过程中利用ATP水解进行微管滑动。3. 轴丝的结构、基本生物化学和生理学在进化上是保守的,但不同生物体中摆动运动的表型和对特定细胞质信号的反应差异很大。4. 已经提出了一种异步动力蛋白臂活动模型——切换点假说——来解释在单向滑动情况下的周期性摆动。该模型表明,摆动表型的多样性可能可以通过双联体臂活动的活跃和不活跃状态之间切换时间的变化来解释。在静止轴丝中轴丝分裂的证据为该假说提供了新的支持。

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