首页> 美国卫生研究院文献>American Journal of Human Genetics >Biallelic Mutation of ARHGEF18 Involved in the Determination of Epithelial Apicobasal Polarity Causes Adult-Onset Retinal Degeneration
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Biallelic Mutation of ARHGEF18 Involved in the Determination of Epithelial Apicobasal Polarity Causes Adult-Onset Retinal Degeneration

机译:ARHGEF18的双等位基因突变参与上皮Apicbasal极性的确定导致成人发病的视网膜变性。

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摘要

Mutations in more than 250 genes are implicated in inherited retinal dystrophy; the encoded proteins are involved in a broad spectrum of pathways. The presence of unsolved families after highly parallel sequencing strategies suggests that further genes remain to be identified. Whole-exome and -genome sequencing studies employed here in large cohorts of affected individuals revealed biallelic mutations in ARHGEF18 in three such individuals. ARHGEF18 encodes ARHGEF18, a guanine nucleotide exchange factor that activates RHOA, a small GTPase protein that is a key component of tight junctions and adherens junctions. This biological pathway is known to be important for retinal development and function, as mutation of CRB1, encoding another component, causes retinal dystrophy. The retinal structure in individuals with ARHGEF18 mutations resembled that seen in subjects with CRB1 mutations. Five mutations were found on six alleles in the three individuals: c.808A>G (p.Thr270Ala), c.1617+5G>A (p.Asp540Glyfs63), c.1996C>T (p.Arg666), c.2632G>T (p.Glu878), and c.2738_2761del (p.Arg913_Glu920del). Functional tests suggest that each disease genotype might retain some ARHGEF18 activity, such that the phenotype described here is not the consequence of nullizygosity. In particular, the p.Thr270Ala missense variant affects a highly conserved residue in the DBL homology domain, which is required for the interaction and activation of RHOA. Previously, knock-out of Arhgef18 in the medaka fish has been shown to cause larval lethality which is preceded by retinal defects that resemble those seen in zebrafish Crumbs complex knock-outs. The findings described here emphasize the peculiar sensitivity of the retina to perturbations of this pathway, which is highlighted as a target for potential therapeutic strategies.
机译:遗传性视网膜营养不良涉及250多个基因的突变。编码的蛋白质参与广泛的途径。在高度平行的测序策略后,未解决的家族的存在表明,还有更多的基因有待鉴定。在大批受影响个体中进行的全外显子组和基因组测序研究显示,在三个这样的个体中,ARHGEF18中存在双等位基因突变。 ARHGEF18编码ARHGEF18,一种鸟嘌呤核苷酸交换因子,可激活RHOA(一种小的GTPase蛋白),是紧密连接和粘附连接的关键组成部分。众所周知,这种生物途径对于视网膜发育和功能很重要,因为编码另一种成分的CRB1突变会引起视网膜营养不良。具有ARHGEF18突变的个体的视网膜结构类似于具有CRB1突变的受试者的视网膜结构。在三个个体的六个等位基因上发现了五个突变:c.808A> G(p.Thr270Ala),c.1617 + 5G> A(p.Asp540Glyfs 63),c.1996C> T (p.Arg666 * ),c.2632G> T(p.Glu878 * )和c.2738_2761del(p.Arg913_Glu920del)。功能测试表明,每种疾病的基因型都可能保留某些ARHGEF18活性,因此此处描述的表型并非无效性的结果。特别地,p.Thr270Ala错义变体影响DBL同源结构域中的高度保守的残基,这对于RHOA的相互作用和激活是必需的。以前,已证明在鱼中敲除Arhgef18会引起幼虫致死性,其后是视网膜缺陷,类似于斑马鱼Crumbs复合物敲除中的缺陷。这里描述的发现强调了视网膜对这种途径的微妙的敏感性,这被强调为潜在治疗策略的目标。

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