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纤毛远侧结构域:进化保守结构的多样性。

Cilia Distal Domain: Diversity in Evolutionarily Conserved Structures.

机构信息

Center for Chemistry and Biochemistry, Faculty of Sciences, University of Lisbon, 1749-016 Lisbon, Portugal.

Health Technology College of Lisbon (ESTeSL)-Polytechnic Institute of Lisbon, 1990-096 Lisbon, Portugal.

出版信息

Cells. 2019 Feb 14;8(2):160. doi: 10.3390/cells8020160.

Abstract

Eukaryotic cilia are microtubule-based organelles that protrude from the cell surface to fulfill sensory and motility functions. Their basic structure consists of an axoneme templated by a centriole/basal body. Striking differences in ciliary ultra-structures can be found at the ciliary base, the axoneme and the tip, not only throughout the eukaryotic tree of life, but within a single organism. Defects in cilia biogenesis and function are at the origin of human ciliopathies. This structural/functional diversity and its relationship with the etiology of these diseases is poorly understood. Some of the important events in cilia function occur at their distal domain, including cilia assembly/disassembly, IFT (intraflagellar transport) complexes' remodeling, and signal detection/transduction. How axonemal microtubules end at this domain varies with distinct cilia types, originating different tip architectures. Additionally, they show a high degree of dynamic behavior and are able to respond to different stimuli. The existence of microtubule-capping structures (caps) in certain types of cilia contributes to this diversity. It has been proposed that caps play a role in axoneme length control and stabilization, but their roles are still poorly understood. Here, we review the current knowledge on cilia structure diversity with a focus on the cilia distal domain and caps and discuss how they affect cilia structure and function.

摘要

真核纤毛是从细胞表面伸出的微管细胞器,具有感觉和运动功能。它们的基本结构由中心粒/基体模板化的轴丝组成。不仅在整个真核生物进化树上,而且在单个生物体中,纤毛的超微结构在纤毛基部、轴丝和尖端都存在显著差异。纤毛发生和功能的缺陷是人类纤毛病的起源。这种结构/功能的多样性及其与这些疾病病因的关系还知之甚少。纤毛功能的一些重要事件发生在其远端区域,包括纤毛的组装/拆卸、IFT(纤毛内运输)复合物的重塑以及信号检测/转导。轴丝微管在该区域的末端方式因不同的纤毛类型而异,产生不同的尖端结构。此外,它们表现出高度的动态行为,并能够对不同的刺激做出反应。某些类型的纤毛中微管加帽结构(caps)的存在促成了这种多样性。有人提出,caps 在轴丝长度控制和稳定中发挥作用,但它们的作用仍知之甚少。本文综述了目前关于纤毛结构多样性的认识,重点介绍了纤毛的远端区域和 caps,并讨论了它们如何影响纤毛的结构和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bab/6406257/c635a0e507c3/cells-08-00160-g001.jpg

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