首页> 外文期刊>American journal of medical genetics, Part A >A novel 2q37 microdeletion containing human neural progenitors genes including STK25 results in severe developmental delay, epilepsy, and microcephaly
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A novel 2q37 microdeletion containing human neural progenitors genes including STK25 results in severe developmental delay, epilepsy, and microcephaly

机译:包含人类神经祖细胞基因(包括STK25)的新型2q37微缺失会导致严重的发育延迟,癫痫和小头畸形

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摘要

2q37 microdeletion syndrome is a rare syndrome characterized by neurodevelopmental delay, bone, cardiovascular, and neurological alterations. This syndrome is typically associated with loss of genetic material of approximately 100 genes in the 2q37 band. However, the genes associated with neurodevelopmental phenotype in this syndrome are still unknown. We identified a deleted region of 496kb by whole genome array CGH in a patient who fulfilled criteria for 2q37 microdeletion syndrome with developmental delay, microcephaly, hypoplasia of the corpus callosum, hand wringing, toe walking, and seizures. The deleted segment contains genes that are highly expressed in the developing human cortical plate and the subventricular zone (SVZ) in vivo and human neural progenitors in vitro, including SEPT2, THAP4, ATG4B, PPP1R7, and STK25. Network analysis revealed that STK25 was the most interacting gene associated with neural development in this deletion. Our report narrows the likely causative genomic region for microcephaly and neurodevelopmental delay in 2q37 microdeletion syndrome to a small genomic region enriched with neural progenitor genes that may represent an important locus for the development of the human cortex and corpus callosum. (c) 2015 Wiley Periodicals, Inc.
机译:2q37微缺失综合症是一种罕见的综合症,其特征是神经发育延迟,骨骼,心血管和神经系统改变。该综合征通常与2q37带中大约100个基因的遗传物质丢失有关。然而,该综合征中与神经发育表型有关的基因仍是未知的。我们在满足2q37微缺失综合症标准,发育延迟,小头畸形,call体发育不全,手扭绞,脚趾行走和癫痫发作的患者中,通过全基因组阵列CGH鉴定了496kb的缺失区域。缺失的片段包含在发育中的人类皮层板和活体内的脑室下区域(SVZ)和体外人类神经祖细胞中高度表达的基因,包括SEPT2,THAP4,ATG4B,PPP1R7和STK25。网络分析表明,在这种缺失中,STK25是与神经发育相关的相互作用最大的基因。我们的报告将2q37微缺失综合征中小头畸形和神经发育延迟的可能原因基因组区域缩小为一个富含神经祖细胞基因的小基因组区域,这可能代表了人类皮层和体发育的重要场所。 (c)2015年威利期刊有限公司

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