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通过 knockdown 斑马鱼对 17p13.1 上 GABARAP 的功能分析。

A functional analysis of GABARAP on 17p13.1 by knockdown zebrafish.

机构信息

International Research and Educational Institute for Integrated Medical Sciences (IREIIMS), Tokyo Women's Medical University, Tokyo, Japan.

出版信息

J Hum Genet. 2010 Mar;55(3):155-62. doi: 10.1038/jhg.2010.1. Epub 2010 Jan 29.

Abstract

Array-based comparative genomic hybridization identified a 2.3-Mb microdeletion of 17p13.2p13.1 in a boy presenting with moderate mental retardation, intractable epilepsy and dysmorphic features. This deletion region was overlapped with the previously proposed shortest region overlapped for microdeletion of 17p13.1 in patients with mental retardation, microcephaly, microretrognathia and abnormal magnetic resonance imaging (MRI) findings of cerebral white matter, in which at least 17 known genes are included. Among them, DLG4/PSD95, GPS2, GABARAP and KCTD11 have a function in neuronal development. Because of the functional importance, we paid attention to DLG4/PSD95 and GABARAP, and analyzed zebrafish in which the zebrafish homolog of human DLG4/PSD95 and GABARAP was knocked down and found that gabarap knockdown resulted in small head and hypoplastic mandible. This finding would be similar to the common findings of the patients with 17p13.1 deletions. Although there were no pathogenic mutations in DLG4/PSD95 or GABARAP in a cohort study with 142 patients with idiopathic developmental delay with/without epilepsy, further studies would be required for genes included in this region.

摘要

基于阵列的比较基因组杂交技术鉴定出一名患有中度智力障碍、难治性癫痫和发育异常的男孩存在 17p13.2p13.1 微缺失,缺失大小为 2.3Mb。该缺失区域与先前提出的智力障碍、小头畸形、小下颌和脑白质磁共振成像(MRI)异常的 17p13.1 缺失患者的最短重叠区域重叠,其中至少包含 17 个已知基因。其中,DLG4/PSD95、GPS2、GABARAP 和 KCTD11 对神经元发育有功能。由于其功能重要性,我们关注 DLG4/PSD95 和 GABARAP,并分析了敲除人类 DLG4/PSD95 和 GABARAP 同源基因的斑马鱼,发现 GABARAP 敲低导致鱼头小、下颌发育不良。这一发现与 17p13.1 缺失患者的常见发现相似。尽管在一项包括 142 名特发性发育迟缓伴/不伴癫痫患者的队列研究中未发现 DLG4/PSD95 或 GABARAP 的致病性突变,但该区域内的基因仍需进一步研究。

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