【2h】

A theory of microtubule catastrophes and their regulation

机译:微管灾难理论及其调控

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摘要

Dynamic instability, in which abrupt transitions occur between growing and shrinking states, is an intrinsic property of microtubules that is regulated by both mechanics and specialized proteins. We discuss a model of dynamic instability based on the popular idea that growth is maintained by a cap at the tip of the fiber. The loss of this cap is thought to trigger the transition from growth to shrinkage, called a catastrophe. The model includes longitudinal interactions between the terminal tubulins of each protofilament and “gating rescues” between neighboring protofilaments. These interactions allow individual protofilaments to transiently shorten during a phase of overall microtubule growth. The model reproduces the reported dependency of the catastrophe rate on tubulin concentration, the time between tubulin dilution and catastrophe, and the induction of microtubule catastrophes by walking depolymerases. The model also reproduces the comet tail distribution that is characteristic of proteins that bind to the tips of growing microtubules.
机译:动态不稳定性是在生长和收缩状态之间突然转变的状态,是微管的内在特性,受机械和特殊蛋白质的调节。我们基于流行的想法讨论动态不稳定性模型,该想法是通过光纤末端的帽盖来维持增长。人们认为失去这一上限会引发从增长到萎缩的转变,这称为灾难。该模型包括每个原型丝的末端微管蛋白之间的纵向相互作用以及相邻原型丝之间的“门控拯救”。这些相互作用使单个原丝在整个微管生长阶段短暂地缩短。该模型再现了突变率对微管蛋白浓度,微管蛋白稀释和灾难之间的时间以及步行解聚酶诱导的微管灾难的依赖性。该模型还复制了彗尾分布,该分布是与生长中的微管尖端结合的蛋白质的特征。

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