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一种罕见的人类 CEP290 变异破坏了初级纤毛的分子完整性,并损害了 Sonic Hedgehog 机制。

A rare human CEP290 variant disrupts the molecular integrity of the primary cilium and impairs Sonic Hedgehog machinery.

机构信息

Program in Neuroscience, Hussman Institute for Autism, Baltimore, MD, 21201, USA.

Institute of Brain Science, School of Medicine, National Yang-Ming University, Taipei, 112, Taiwan.

出版信息

Sci Rep. 2018 Nov 26;8(1):17335. doi: 10.1038/s41598-018-35614-x.

DOI:10.1038/s41598-018-35614-x
PMID:30478281
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6255789/
Abstract

The primary cilium is a microtubule-enriched cell-communication organelle that participates in mechanisms controlling tissue development and maintenance, including cerebellar architecture. Centrosomal protein of 290 kDa (CEP290) is a protein important for centrosomal function and ciliogenesis. Mutations in CEP290 have been linked to a group of multi-organ disorders - termed ciliopathies. The neurophysiological deficits observed in ciliopathies are sometimes associated with the progression of autistic traits. Here, the cellular function of two rare variants of CEP290 identified from recent exome sequencing of autistic individuals are investigated. Cells expressing Cep290 carrying the missense mutation R1747Q in mouse exhibited a defective Sonic hedgehog (Shh) signalling response, mislocalisation of the Shh receptor Smoothened (Smo), and dysregulation of ciliary protein mobility, which ultimately disrupted the proliferation of cerebellar granule progenitors (CGPs). This data was furthermore corroborated in an autism patient-derived iPSC line harbouring the R1746Q rare CEP290 variant. Evidence from this study suggests that the R1746Q mutation interferes with the function of CEP290 to maintain the ciliary diffusion barrier and disrupts the integrity of the molecular composition in the primary cilium, which may contribute to alterations in neuroarchitecture.

摘要

初级纤毛是富含微管的细胞通讯细胞器,参与控制组织发育和维持的机制,包括小脑结构。290kDa 中心体蛋白(CEP290)是一种对中心体功能和纤毛发生很重要的蛋白。CEP290 的突变与一组多器官疾病有关 - 称为纤毛病。纤毛病中观察到的神经生理缺陷有时与自闭症特征的进展有关。在这里,研究了最近从自闭症个体的外显子组测序中鉴定出的 CEP290 的两种罕见变体的细胞功能。在携带 R1747Q 错义突变的 Cep290 表达的细胞中,表现出 Sonic hedgehog (Shh) 信号反应缺陷、Shh 受体 Smoothened (Smo) 的定位错误以及纤毛蛋白流动性失调,最终破坏了小脑颗粒前体细胞 (CGPs) 的增殖。这一数据在携带 R1746Q 罕见 CEP290 变体的自闭症患者衍生的 iPSC 系中得到了进一步证实。这项研究的证据表明,R1746Q 突变干扰了 CEP290 的功能,以维持纤毛扩散屏障,并破坏初级纤毛中分子成分的完整性,这可能导致神经结构的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2fc/6255789/e039a1907626/41598_2018_35614_Fig5_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2fc/6255789/e039a1907626/41598_2018_35614_Fig5_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2fc/6255789/e039a1907626/41598_2018_35614_Fig5_HTML.jpg

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