Models, Regulations, and Functions of Microtubule Severing by Katanin.

ISRN molecular biology Pub Date : 2012-09-27 eCollection Date: 2012-01-01 DOI:10.5402/2012/596289
Debasish Kumar Ghosh, Debdeep Dasgupta, Abhishek Guha
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引用次数: 27

Abstract

Regulation of microtubule dynamics depends on stochastic balance between polymerization and severing process which lead to differential spatiotemporal abundance and distribution of microtubules during cell development, differentiation, and morphogenesis. Microtubule severing by a conserved AAA family protein Katanin has emerged as an important microtubule architecture modulating process in cellular functions like division, migration, shaping and so on. Regulated by several factors, Katanin manifests connective crosstalks in network motifs in regulation of anisotropic severing pattern of microtubule protofilaments in cell type and stage dependent way. Mechanisms of structural disintegration of microtubules by Katanin involve heterogeneous mechanochemical processes and sensitivity of microtubules to Katanin plays significant roles in mitosis/meiosis, neurogenesis, cilia/flagella formation, cell wall development and so on. Deregulated and uncoordinated expression of Katanin has been shown to have implications in pathophysiological conditions. In this paper, we highlight mechanistic models and regulations of microtubule severing by Katanin in context of structure and various functions of Katanin in different organisms.

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卡塔宁切断微管的模型、规律和功能。
微管动力学的调节依赖于聚合和断裂过程之间的随机平衡,这导致了微管在细胞发育、分化和形态发生过程中的时空丰度和分布的差异。保守的AAA家族蛋白Katanin的微管切断已成为细胞分裂、迁移、成型等功能中重要的微管结构调节过程。在多种因素的调控下,Katanin在微管原丝各向异性切断模式的网络基序中表现为连接串扰,并以细胞类型和阶段依赖的方式进行调控。Katanin分解微管结构的机制涉及异质性的机械化学过程,微管对Katanin的敏感性在有丝分裂/减数分裂、神经发生、纤毛/鞭毛形成、细胞壁发育等过程中起重要作用。Katanin的不调节和不协调表达已被证明在病理生理条件下具有影响。本文从卡他蛋白的结构和在不同生物中的各种功能出发,重点介绍卡他蛋白切断微管的机制模型和调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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