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Recurrent HERV-H-Mediated 3q13.2q13.31 Deletions Cause a Syndrome of Hypotonia and Motor Language and Cognitive Delays

机译:HERV-H介导的3q13.2q13.31反复缺失导致低钾血症和运动语言和认知障碍综合症

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摘要

We describe the molecular and clinical characterization of nine individuals with recurrent, 3.4-Mb, de novo deletions of 3q13.2q13.31 detected by chromosomal microarray analysis. All individuals have hypotonia and language and motor delays and also variably express mild to moderate cognitive delays (8/9), abnormal behavior (7/9), and autism spectrum disorders (3/9). Common facial features include down-slanting palpebral fissures with epicanthal folds, a slightly bulbous nose, and relative macrocephaly. Twenty-eight genes map to the deleted region, including four strong candidate genes, DRD3, ZBTB20, GAP43, and BOC, with important roles in neural and/or muscular development. Analysis of the breakpoint regions based on array data revealed directly oriented human endogenous retrovirus (HERV-H) elements ∼5kb in size and of >95% DNA sequence identity flanking the deletion. Subsequent DNA sequencing revealed different deletion breakpoints and suggested non-allelic homologous recombination (NAHR) between HERV-H elements as a mechanism of deletion formation, analogous to HERV-I-flanked and NAHR-mediated AZFa deletions. We propose that similar HERV elements may also mediate other recurrent deletion and duplication events on a genome-wide scale. Observation of rare recurrent chromosomal events such as these deletions helps to further the understanding of mechanisms behind naturally occurring variation in the human genome and its contribution to genetic disease.
机译:我们描述了通过染色体微阵列分析检测到的9个具有3q13.2q13.31的复发性3.4-Mb从头缺失的个体的分子和临床特征。所有个体都有肌张力低下,语言和运动迟缓,还可变地表达轻度至中度认知迟缓(8/9),异常行为(7/9)和自闭症谱系障碍(3/9)。常见的面部特征包括具有上epi褶的向下倾斜的睑裂,略微的球鼻和相对的大头畸形。 28个基因定位到缺失的区域,包括四个强候选基因DRD3,ZBTB20,GAP43和BOC,它们在神经和/或肌肉发育中具有重要作用。基于阵列数据对断点区域的分析显示,直接定向的人内源性逆转录病毒(HERV-H)元件大小约为5kb,其两侧有大于95%的DNA序列相同。随后的DNA测序揭示了不同的缺失断点,并表明HERV-H元件之间的非等位基因同源重组(NAHR)作为缺失形成的机制,类似于HERV-1侧翼和NAHR介导的AZFa缺失。我们建议相似的HERV元素也可能介导全基因组范围内的其他复发性删除和重复事件。对罕见的复发性染色体事件(如这些缺失)的观察有助于进一步了解人类基因组中自然发生的变异背后的机制及其对遗传疾病的贡献。

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