人类疾病中的动态纤毛。

Anna D'Angelo, Brunella Franco
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引用次数: 92

摘要

纤毛是几乎所有哺乳动物细胞表面突出的特化细胞器。它们由一个由两个中心粒组成的基体和一个被称为轴突的突起体组成。虽然所有纤毛的基本结构都是相同的,但不同的细胞类型存在许多差异,表明其功能不同。近年来许多研究阐明了9+0初级纤毛的功能。初级纤毛是细胞的天线,Hedgehog、Wnt、平面细胞极性(PCP)等重要信号通路均通过纤毛传导。许多动物模型研究表明,在胚胎发生过程中,初级纤毛在确定身体的正确模式方面起着至关重要的作用。纤毛由数百种蛋白质组成,其中一种蛋白质的损伤或功能障碍可导致纤毛完全丧失或形成异常纤毛。纤毛蛋白的突变引起纤毛病,可以影响许多器官在不同程度的严重程度,并以广泛的表型为特征。纤毛蛋白可以在一种以上的纤毛病中发生突变,这表明蛋白质之间存在相互作用。迄今为止,人们对初级纤毛在成人生活中的作用知之甚少,人们很容易猜测它们在维持成人器官中的作用。初级纤毛研究的现状揭示了一个非常复杂的作用。纤毛相关途径的分析和纤毛病的不同临床表型有助于阐明这些复杂细胞器的功能。本文就纤毛的功能及其分子机制的研究进展作一综述。
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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The dynamic cilium in human diseases.

Cilia are specialized organelles protruding from the cell surface of almost all mammalian cells. They consist of a basal body, composed of two centrioles, and a protruding body, named the axoneme. Although the basic structure of all cilia is the same, numerous differences emerge in different cell types, suggesting diverse functions. In recent years many studies have elucidated the function of 9+0 primary cilia. The primary cilium acts as an antenna for the cell, and several important pathways such as Hedgehog, Wnt and planar cell polarity (PCP) are transduced through it. Many studies on animal models have revealed that during embryogenesis the primary cilium has an essential role in defining the correct patterning of the body. Cilia are composed of hundreds of proteins and the impairment or dysfunction of one protein alone can cause complete loss of cilia or the formation of abnormal cilia. Mutations in ciliary proteins cause ciliopathies which can affect many organs at different levels of severity and are characterized by a wide spectrum of phenotypes. Ciliary proteins can be mutated in more than one ciliopathy, suggesting an interaction between proteins. To date, little is known about the role of primary cilia in adult life and it is tempting to speculate about their role in the maintenance of adult organs. The state of the art in primary cilia studies reveals a very intricate role. Analysis of cilia-related pathways and of the different clinical phenotypes of ciliopathies helps to shed light on the function of these sophisticated organelles. The aim of this review is to evaluate the recent advances in cilia function and the molecular mechanisms at the basis of their activity.

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