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首页> 外文期刊>Human Molecular Genetics >The Lowe syndrome protein OCRL1 is involved in primary cilia assembly
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The Lowe syndrome protein OCRL1 is involved in primary cilia assembly

机译:Lowe综合征蛋白OCRL1与初级纤毛组装有关

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摘要

Lowe syndrome (LS) is a devastating, X-linked genetic disease characterized by the presence of congenital cataracts, profound learning disabilities and renal dysfunction. Unfortunately, children affected with LS often die early of health complications including renal failure. Although this syndrome was first described in the early 1950s and the affected gene, OCRL1, was identified more than 17 years ago, the mechanism by which Ocrl1 defects lead to LS's symptoms remains unknown. Here we show that LS display characteristics of a ciliopathy. Specifically, we found that patients’ cells have defects in the assembly of primary cilia and this phenotype was reproduced in cell lines by knock-down of Ocrl1. Importantly, this defect could be rescued by re-introduction of WT Ocrl1 in both patient and Ocrl1 knock-down cells. In addition, a zebrafish animal model of LS exhibited cilia defects and multiple morphological and anatomical abnormalities typically seen in ciliopathies. Mechanistically, we show that Ocrl1 is involved in protein trafficking to the primary cilia in an Rab8-and IPIP27/Ses-dependent manner. Taking into consideration the relevance of the signaling pathways hosted by the primary cilium, our results suggest hitherto unrecognized mechanisms by which Ocrl1 deficiency may contribute to the phenotypic characteristics of LS. This conceptual change in our understanding of the disease etiology may provide an alternative avenue for the development of therapies.
机译:劳氏综合征(LS)是一种具有破坏性的X连锁遗传病,其特征是先天性白内障,严重的学习障碍和肾功能不全。不幸的是,患LS的儿童通常会在包括肾脏衰竭在内的健康并发症中早逝。尽管这种综合征最早是在1950年代初被描述的,并且受影响的基因OCRL1在17年前就已被发现,但是Ocrl1缺陷导致LS症状的机制仍然未知。在这里,我们显示LS显示出一种睫状病变的特征。具体来说,我们发现患者的细胞在原发性纤毛的装配中存在缺陷,并且该表型通过敲除Ocrl1在细胞系中复制。重要的是,可以通过在患者和Ocrl1敲低细胞中重新引入WT Ocrl1来挽救该缺陷。另外,LS的斑马鱼动物模型表现出纤毛缺陷和通常在纤毛病中常见的多种形态和解剖异常。从机理上讲,我们显示Ocrl1以Rab8-和IPIP27 / Ses依赖的方式参与了向初级纤毛的蛋白质运输。考虑到初级纤毛寄主的信号通路的相关性,我们的结果表明,迄今为止,Ocrl1缺乏可能通过其机制可能有助于LS的表型特征尚未被认识的机制。我们对疾病病因学理解的这种观念上的变化可能为治疗方法的发展提供了另一种途径。

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