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Missense mutation R338W in ARHGEF9 in a family with X-linked intellectual disability with variable macrocephaly and macro-orchidism

机译:X连锁智力障碍,大头畸形和大睾丸畸形的家庭中ARHGEF9的错义突变R338W

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摘要

Non-syndromal X-linked intellectual disability (NS-XLID) represents a broad group of clinical disorders in which ID is the only clinically consistent manifestation. Although in many cases either chromosomal linkage data or knowledge of the >100 existing XLID genes has assisted mutation discovery, the underlying cause of disease remains unresolved in many families. We report the resolution of a large family (K8010) with NS-XLID, with variable macrocephaly and macro-orchidism. Although a previous linkage study had mapped the locus to Xq12-q21, this region contained too many candidate genes to be analyzed using conventional approaches. However, X-chromosome exome sequencing, bioinformatics analysis and segregation analysis revealed a novel missense mutation (c.1012C>T; p.R338W) in ARHGEF9. This gene encodes collybistin (CB), a neuronal GDP-GTP exchange factor previously implicated in several cases of XLID, as well as clustering of gephyrin and GABAA receptors at inhibitory synapses. Molecular modeling of the CB R338W substitution revealed that this change results in the substitution of a long electropositive side-chain with a large non-charged hydrophobic side-chain. The R338W change is predicted to result in clashes with adjacent amino acids (K363 and N335) and disruption of electrostatic potential and local folding of the PH domain, which is known to bind phosphatidylinositol-3-phosphate (PI3P/PtdIns-3-P). Consistent with this finding, functional assays revealed that recombinant CB CB2sH3-R338W was deficient in PI3P binding and was not able to translocate EGFP-gephyrin to submembrane microaggregates in an in vitro clustering assay. Taken together, these results suggest that the R338W mutation in ARHGEF9 is the underlying cause of NS-XLID in this family. © 2016 Long, May, James, Grannó, Johnson, Tarpey, Stevenson, Harvey, Schwartz and Harvey.
机译:非综合征X连锁智力障碍(NS-XLID)代表了广泛的临床疾病,其中ID是唯一的临床一致表现。尽管在许多情况下,无论是染色体连锁数据还是对> 100种现有XLID基因的了解,都有助于突变的发现,但在许多家庭中,疾病的根本原因仍未解决。我们报告了NS-XLID的大家族(K8010)的解决方案,其巨头畸形和宏观睾丸异常。尽管先前的连锁研究已将基因座定位到Xq12-q21,但该区域包含太多候选基因,无法使用常规方法进行分析。然而,X染色体外显子组测序,生物信息学分析和分离分析显示,ARHGEF9中存在一个新的错义突变(c.1012C> T; p.R338W)。该基因编码鞘磷脂(CB),这是神经元GDP-GTP交换因子,以前与XLID的几种情况有关,并且在抑制性突触中聚集了gephyrin和GABAA受体。 CB R338W取代的分子模型表明,这种变化导致长的正电性侧链被大的不带电荷的疏水性侧链取代。预计R338W的变化会导致与相邻氨基酸(K363和N335)的碰撞以及静电势的破坏和PH结构域的局部折叠,已知该结构域会结合磷脂酰肌醇3-磷酸酯(PI3P / PtdIns-3-P) 。与此发现一致的是,功能测定揭示了重组CB CB2sH3-R338W在PI3P结合方面缺乏,并且在体外聚类测定中无法将EGFP-gephyrin转运至亚膜微聚集体。综上,这些结果表明,ARHGEF9中的R338W突变是该家族中NS-XLID的根本原因。 ©2016 Long,May,James,Grannó,Johnson,Tarpey,Stevenson,Harvey,Schwartz和Harvey。

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