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Using extended pedigrees to identify novel autism spectrum disorder (ASD) candidate genes

机译:使用扩展的谱系来鉴定新型自闭症谱系障碍(ASD)候选基因

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摘要

Copy number variation has emerged as an important cause of phenotypic variation, particularly in relation to some complex disorders. Autism spectrum disorder (ASD) is one such disorder, in which evidence is emerging for an etiological role for some rare penetrant de novo and rare inherited copy number variants (CNVs). De novo variation, however, does not always explain the familial nature of ASD, leaving a gap in our knowledge concerning the heritable genetic causes of this disorder. Extended pedigrees, in which several members have ASD, provide an opportunity to investigate inherited genetic risk factors. In this current study, we recruited 19 extended ASD pedigrees, and, using the Illumina HumanOmni2.5 BeadChip, conducted genome-wide CNV interrogation. We found no definitive evidence of an etiological role for segregating CNVs in these pedigrees, and no evidence that linkage signals in these pedigrees are explained by segregating CNVs. However, a small number of putative de novo variants were transmitted from BAP parents to their ASD offspring, and evidence emerged for a rare duplication CNV at 11p13.3 harboring two putative 'developmentaleuropsychiatric' susceptibility gene(s), GSTP1 and NDUFV1.
机译:拷贝数变异已成为表型变异的重要原因,特别是与某些复杂疾病有关。自闭症谱系障碍(ASD)就是这样一种疾病,其中一些新的罕见渗透剂和罕见的遗传拷贝数变异(CNV)的病因作用的证据正在出现。然而,从头变异并不能总是解释ASD的家族性质,在我们关于这种疾病的遗传遗传原因的知识上还存在空白。扩展谱系(其中几个成员患有ASD)为研究遗传遗传风险因素提供了机会。在本研究中,我们招募了19个扩展的ASD谱系,并使用Illumina HumanOmni2.5 BeadChip进行了全基因组CNV审讯。我们没有发现在这些谱系中分离CNV的病因的确切证据,也没有证据表明通过分离CNV可以解释这些谱系中的连锁信号。然而,少数假定的从头突变从BAP父母传给了他们的ASD后代,并且证据表明在11p13.3处罕见的重复CNV带有两个假定的“发育/神经精神病”易感基因GSTP1和NDUFV1。

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