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纤毛尖端的奥秘:视网膜中的纤毛发生和泛素-蛋白酶体系统。

By the Tips of Your Cilia: Ciliogenesis in the Retina and the Ubiquitin-Proteasome System.

机构信息

Departament de Genètica, Microbiologia i Estadística, Universitat de Barcelona, Barcelona, Spain.

CIBERER, ISCIII, Universitat de Barcelona, Barcelona, Spain.

出版信息

Adv Exp Med Biol. 2020;1233:303-310. doi: 10.1007/978-3-030-38266-7_13.

Abstract

Primary cilia are microtubule-based sensory organelles that are involved in the organization of numerous key signals during development and in differentiated tissue homeostasis. In fact, the formation and resorption of cilia highly depends on the cell cycle phase in replicative cells, and the ubiquitin proteasome pathway (UPS) proteins, such as E3 ligases and deubiquitinating enzymes, promote microtubule assembly and disassembly by regulating the degradation/availability of ciliary regulatory proteins. Also, many differentiated tissues display cilia, and mutations in genes encoding ciliary proteins are associated with several human pathologies, named ciliopathies, which are multi-organ rare diseases. The retina is one of the organs most affected by ciliary gene mutations because photoreceptors are ciliated cells. Photoreception and phototransduction occur in the outer segment, a highly specialized neurosensory cilium. In this review, we focus on the function of UPS proteins in ciliogenesis and cilia length control in replicative cells and compare it with the scanty data on the identified UPS genes that cause syndromic and non-syndromic inherited retinal disorders. Clearly, further work using animal models and gene-edited mutants of ciliary genes in cells and organoids will widen the landscape of UPS involvement in ciliogenesis and cilia homeostasis.

摘要

原发性纤毛是基于微管的感觉器官,参与发育过程中众多关键信号的组织,以及分化组织的稳态。事实上,纤毛的形成和吸收高度依赖于复制细胞的细胞周期阶段,泛素蛋白酶体途径(UPS)蛋白,如 E3 连接酶和去泛素化酶,通过调节纤毛调节蛋白的降解/可用性来促进微管的组装和拆卸。此外,许多分化组织显示出纤毛,编码纤毛蛋白的基因突变与几种人类病理学有关,称为纤毛病,这是一种多器官罕见疾病。视网膜是受纤毛基因突变影响最大的器官之一,因为感光细胞是纤毛细胞。光感受和光转导发生在外节,这是一种高度特化的神经感觉纤毛。在这篇综述中,我们重点介绍 UPS 蛋白在复制细胞中的纤毛发生和纤毛长度控制中的功能,并将其与已确定的导致综合征和非综合征遗传性视网膜疾病的 UPS 基因的稀少数据进行比较。显然,使用动物模型和细胞和类器官中的纤毛基因的基因编辑突变体进行进一步研究,将拓宽 UPS 参与纤毛发生和纤毛稳态的范围。

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