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利用全基因组单等位基因表达筛查技术鉴定自闭症中的功能性稀有变异。

Identification of a functional rare variant in autism using genome-wide screen for monoallelic expression.

机构信息

Department of Genetics, The Institute of Life Sciences, The Hebrew University of Jerusalem,Edmond J. Safra campus, Jerusalem 91904, Israel.

出版信息

Hum Mol Genet. 2011 Sep 15;20(18):3632-41. doi: 10.1093/hmg/ddr283. Epub 2011 Jun 16.

Abstract

Recent work has led to the identification of several susceptibility genes for autism spectrum disorder (ASD) and an increased appreciation of the importance of rare and de novo mutations. Some of the mutations may be very hard to detect using current strategies, especially if they are located in regulatory regions. We present a new approach to identify functional mutations that exploit the fact that many rare mutations disrupt the expression of genes from a single parental chromosome. The method incorporates measurement of the relative expression of the two copies of a gene across the genome using single nucleotide polymorphism arrays. Allelic expression has been successfully used to study common regulatory polymorphisms; however, it has not been implemented as a screening tool for rare mutation. We tested the potential of this approach by screening for monoallelic expression in lymphoblastoid cell lines derived from a small ASD cohort. After filtering regions shared across multiple samples, we identified genes showing monoallelic expression in specific ASD samples. Validation by quantitative sequencing demonstrated that the genes (or only part of them) are monoallelic expressed. The genes included both previously suspected risk factors for ASD and novel candidates. In one gene, named autism susceptibility candidate 2 (AUTS2), we identified a rare duplication that is likely to be the cause of monoallelic expression. Our results demonstrate the ability to identify rare regulatory mutations using genome-wide allelic expression screens, capabilities that could be expanded to other diseases, especially those with suspected involvement of rare dominantly acting mutations.

摘要

最近的研究工作已经确定了几个自闭症谱系障碍(ASD)的易感基因,并更加认识到罕见和新生突变的重要性。有些突变可能很难用当前的策略检测到,特别是如果它们位于调控区域。我们提出了一种新的方法来识别功能突变,该方法利用了许多罕见突变会破坏来自单一亲本染色体上的基因表达这一事实。该方法结合了使用单核苷酸多态性阵列测量基因组中两个基因拷贝的相对表达。等位基因表达已成功用于研究常见的调控多态性;然而,它尚未作为一种筛选工具用于罕见突变。我们通过对来自一小部分 ASD 队列的淋巴母细胞系进行单等位基因表达筛选来测试这种方法的潜力。在对多个样本共享的区域进行过滤后,我们鉴定出在特定 ASD 样本中显示单等位基因表达的基因。通过定量测序验证,证明了这些基因(或其中只有一部分)是单等位基因表达的。这些基因包括先前怀疑与 ASD 相关的风险因素和新的候选基因。在一个名为自闭症易感性候选基因 2(AUTS2)的基因中,我们鉴定出一种罕见的重复,很可能是单等位基因表达的原因。我们的结果表明,使用全基因组等位基因表达筛选可以识别罕见的调控突变,这种能力可以扩展到其他疾病,特别是那些疑似涉及罕见显性作用突变的疾病。

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