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人类和小鼠 WDR35 突变导致短肋多指畸形综合征,原因是纤毛发生异常。

Human and mouse mutations in WDR35 cause short-rib polydactyly syndromes due to abnormal ciliogenesis.

机构信息

Medical Research Council Human Genetics Unit, Institute of Genetics and Molecular Medicine, Western General Hospital, Edinburgh EH4 2XU, UK.

出版信息

Am J Hum Genet. 2011 Apr 8;88(4):508-15. doi: 10.1016/j.ajhg.2011.03.015.

Abstract

Defects in cilia formation and function result in a range of human skeletal and visceral abnormalities. Mutations in several genes have been identified to cause a proportion of these disorders, some of which display genetic (locus) heterogeneity. Mouse models are valuable for dissecting the function of these genes, as well as for more detailed analysis of the underlying developmental defects. The short-rib polydactyly (SRP) group of disorders are among the most severe human phenotypes caused by cilia dysfunction. We mapped the disease locus from two siblings affected by a severe form of SRP to 2p24, where we identified an in-frame homozygous deletion of exon 5 in WDR35. We subsequently found compound heterozygous missense and nonsense mutations in WDR35 in an independent second case with a similar, severe SRP phenotype. In a mouse mutation screen for developmental phenotypes, we identified a mutation in Wdr35 as the cause of midgestation lethality, with abnormalities characteristic of defects in the Hedgehog signaling pathway. We show that endogenous WDR35 localizes to cilia and centrosomes throughout the developing embryo and that human and mouse fibroblasts lacking the protein fail to produce cilia. Through structural modeling, we show that WDR35 has strong homology to the COPI coatamers involved in vesicular trafficking and that human SRP mutations affect key structural elements in WDR35. Our report expands, and sheds new light on, the pathogenesis of the SRP spectrum of ciliopathies.

摘要

纤毛形成和功能的缺陷导致了一系列人类骨骼和内脏的异常。已经鉴定出几个基因的突变导致了这些疾病的一部分,其中一些显示出遗传(基因座)异质性。小鼠模型对于解析这些基因的功能以及对潜在发育缺陷进行更详细的分析非常有价值。短肋多指(SRP)综合征是由纤毛功能障碍引起的最严重的人类表型之一。我们将受严重 SRP 影响的两个兄弟姐妹的疾病基因座定位到 2p24,在那里我们鉴定出 WDR35 外显子 5 的纯合缺失框内缺失。随后,我们在具有类似严重 SRP 表型的第二个独立病例中发现了 WDR35 的复合杂合错义和无义突变。在发育表型的小鼠突变筛选中,我们发现 Wdr35 的突变是导致中孕期致死的原因,具有 Hedgehog 信号通路缺陷的特征性异常。我们表明,内源性 WDR35 定位于整个发育胚胎的纤毛和中心体,并且缺乏该蛋白的人源和鼠源成纤维细胞无法产生纤毛。通过结构建模,我们表明 WDR35 与人源 SRP 突变影响 WDR35 中的关键结构元件具有强烈的同源性,COPI 外套复合物参与囊泡运输。我们的报告扩展并揭示了 SRP 纤毛病谱的发病机制。

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