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首页> 外文期刊>Human Genetics >Disruptions of the novel KIAA1202 gene are associated with X-linked mental retardation.
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Disruptions of the novel KIAA1202 gene are associated with X-linked mental retardation.

机译:新的KIAA1202基因的破坏与X连锁的智力低下有关。

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The extensive heterogeneity underlying the genetic component of mental retardation (MR) is the main cause for our limited understanding of the aetiology of this highly prevalent condition. Hence we set out to identify genes involved in MR. We investigated the breakpoints of two balanced X;autosome translocations in two unrelated female patients with mild/moderate MR and found that the Xp11.2 breakpoints disrupt the novel human KIAA1202 (hKIAA1202) gene in both cases. We also identified a missense exchange in this gene, segregating with the Stocco dos Santos XLMR syndrome in a large four-generation pedigree but absent in >1,000 control X-chromosomes. Among other phenotypic characteristics, the affected males in this family present with severe MR, delayed or no speech, seizures and hyperactivity. Molecular studies of hKIAA1202 determined its genomic organisation, its expression throughout the brain and the regulation of expression of its mouse homologue during development. Transient expression of the wild-type KIAA1202 protein in HeLa cells showed partial colocalisation with the F-actin based cytoskeleton. On the basis of its domain structure, we argue that hKIAA1202 is a new member of the APX/Shroom protein family. Members of this family contain a PDZ and two ASD domains of unknown function and have been shown to localise at the cytoskeleton, and play a role in neurulation, cellular architecture, actin remodelling and ion channel function. Our results suggest that hKIAA1202 may be important in cognitive function and/or development.
机译:智力低下(MR)的遗传成分所具有的广泛异质性是导致我们对这种高度流行的病因的病因学了解有限的主要原因。因此,我们着手确定参与MR的基因。我们调查了两名不相关的女性轻度/中度MR患者中两个平衡的X;常染​​色体转位的断点,发现Xp11.2断点在两种情况下都破坏了新型人类KIAA1202(hKIAA1202)基因。我们还确定了该基因的错义交换,与大型四代谱系中的Stocco dos Santos XLMR综合征分离,但在> 1,000个对照X染色体中不存在。在其他表型特征中,该家庭中受影响的男性表现出严重的MR,延迟或无言语,癫痫发作和活动过度。 hKIAA1202的分子研究确定了它的基因组组织,在整个大脑中的表达以及在发育过程中其小鼠同源物表达的调控。 HeLa细胞中野生型KIAA1202蛋白的瞬时表达显示与基于F-肌动蛋白的细胞骨架部分共定位。根据其结构域结构,我们认为hKIAA1202是APX / Shroom蛋白家族的新成员。该家族的成员包含一个PDZ和两个未知功能的ASD域,并已显示其位于细胞骨架中,并在神经功能,细胞结构,肌动蛋白重塑和离子通道功能中发挥作用。我们的结果表明,hKIAA1202在认知功能和/或发育中可能很重要。

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