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对6q27染色体末端缺失患者中导致大脑结构异常的候选基因的描绘。

Delineation of candidate genes responsible for structural brain abnormalities in patients with terminal deletions of chromosome 6q27.

作者信息

Peddibhotla Sirisha, Nagamani Sandesh C S, Erez Ayelet, Hunter Jill V, Holder J Lloyd, Carlin Mary E, Bader Patricia I, Perras Helene M F, Allanson Judith E, Newman Leslie, Simpson Gayle, Immken LaDonna, Powell Erin, Mohanty Aaron, Kang Sung-Hae L, Stankiewicz Pawel, Bacino Carlos A, Bi Weimin, Patel Ankita, Cheung Sau W

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA.

1] Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, USA [2] Department of Biological Regulation, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Eur J Hum Genet. 2015 Jan;23(1):54-60. doi: 10.1038/ejhg.2014.51. Epub 2014 Apr 16.

Abstract

Patients with terminal deletions of chromosome 6q present with structural brain abnormalities including agenesis of corpus callosum, hydrocephalus, periventricular nodular heterotopia, and cerebellar malformations. The 6q27 region harbors genes that are important for the normal development of brain and delineation of a critical deletion region for structural brain abnormalities may lead to a better genotype-phenotype correlation. We conducted a detailed clinical and molecular characterization of seven unrelated patients with deletions involving chromosome 6q27. All patients had structural brain abnormalities. Using array comparative genomic hybridization, we mapped the size, extent, and genomic content of these deletions. The smallest region of overlap spans 1.7 Mb and contains DLL1, THBS2, PHF10, and C6orf70 (ERMARD) that are plausible candidates for the causation of structural brain abnormalities. Our study reiterates the importance of 6q27 region in normal development of brain and helps identify putative genes in causation of structural brain anomalies.

摘要

6号染色体长臂末端缺失的患者存在结构性脑异常,包括胼胝体发育不全、脑积水、脑室周围结节性异位和小脑畸形。6q27区域包含对大脑正常发育至关重要的基因,确定结构性脑异常的关键缺失区域可能会导致更好的基因型-表型相关性。我们对7例涉及6q27缺失的无关患者进行了详细的临床和分子特征分析。所有患者均有结构性脑异常。使用阵列比较基因组杂交技术,我们绘制了这些缺失的大小、范围和基因组内容。最小重叠区域跨度为1.7 Mb,包含DLL1、THBS2、PHF10和C6orf70(ERMARD),它们可能是结构性脑异常的致病候选基因。我们的研究重申了6q27区域在大脑正常发育中的重要性,并有助于确定结构性脑异常病因中的假定基因。

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