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意大利一个家族中,寡树突胶质细胞糖蛋白 1 蛋白 BAR 结构域插入 16 个氨基酸导致精神发育迟缓和小脑发育不良。

Insertion of 16 amino acids in the BAR domain of the oligophrenin 1 protein causes mental retardation and cerebellar hypoplasia in an Italian family.

机构信息

Istituto di Genetica Medica, Università Cattolica, Roma, Italy.

出版信息

Hum Mutat. 2011 Nov;32(11):E2294-307. doi: 10.1002/humu.21567. Epub 2011 Sep 14.

Abstract

We observed a three-generation family with two maternal cousins and an uncle affected by mental retardation (MR) with cerebellar hypoplasia. X-linked inheritance and the presence of cerebellar malformation suggested a mutation in the OPHN1 gene. In fact, mutational screening revealed a 2-bp deletion that abolishes a donor splicing site, resulting in the inclusion of the initial 48 nucleotides of intron 7 in the mRNA. This mutation determines the production of a mutant oligophrenin 1 protein with 16 extra amino acids inserted in-frame in the N-terminal BAR (Bin1/amphiphysin/Rvs167) domain. This is the first case of a mutation in OPHN1 that does not result in the production of a truncated protein or in its complete loss. OPHN1 (ARHGAP41) encodes a GTPase-activating (GAP) protein belonging to the GRAF subfamily characterized by an N-terminal BAR domain, followed by a pleckstrin-homology (PH) domain and the GAP domain. GRAF proteins play a role in endocytosis and are supposed to dimerize via their BAR domain, that induces membrane curvature. The extra 16 amino acids cause the insertion of 4.4 turns in the third alpha-helix of the BAR domain and apparently impair the protein function. In fact, the clinical phenotype of these patients is identical to that of patients with loss-of-function mutations.

摘要

我们观察到一个三代家族,其中有两个表兄弟和一个叔叔受到小脑发育不全性智力迟钝(MR)的影响。X 连锁遗传和小脑畸形的存在提示 OPHN1 基因突变。事实上,突变筛查显示 2 个碱基对的缺失,导致了剪接受体位点的缺失,从而使 7 号内含子的前 48 个核苷酸包含在 mRNA 中。该突变导致产生突变的少突细胞蛋白,在 N 端 BAR(Bin1/ amphiphysin/Rvs167)结构域中插入 16 个额外的框内氨基酸。这是 OPHN1 突变中第一个不导致截短蛋白产生或完全缺失的病例。OPHN1(ARHGAP41)编码一种 GTP 酶激活(GAP)蛋白,属于 GRAF 亚家族,其特征是 N 端 BAR 结构域,其后是pleckstrin-homology(PH)结构域和 GAP 结构域。GRAF 蛋白在胞吞作用中起作用,并通过其 BAR 结构域二聚化,诱导膜弯曲。额外的 16 个氨基酸导致 BAR 结构域的第三个α-螺旋插入 4.4 个转角,显然会损害蛋白功能。事实上,这些患者的临床表型与功能丧失突变患者的表型相同。

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