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利用全外显子组和mRNA测序的综合分析对X染色体失活进行表征

Characterization of X chromosome inactivation using integrated analysis of whole-exome and mRNA sequencing.

作者信息

Szelinger Szabolcs, Malenica Ivana, Corneveaux Jason J, Siniard Ashley L, Kurdoglu Ahmet A, Ramsey Keri M, Schrauwen Isabelle, Trent Jeffrey M, Narayanan Vinodh, Huentelman Matthew J, Craig David W

机构信息

Center for Rare Childhood Disorders, The Translational Genomics Research Institute, Phoenix, Arizona, United States of America; Molecular and Cellular Biology Interdisciplinary Graduate Program, College of Liberal Arts and Sciences, Arizona State University, Tempe, Arizona, United States of America.

Center for Rare Childhood Disorders, The Translational Genomics Research Institute, Phoenix, Arizona, United States of America.

出版信息

PLoS One. 2014 Dec 12;9(12):e113036. doi: 10.1371/journal.pone.0113036. eCollection 2014.

Abstract

In females, X chromosome inactivation (XCI) is an epigenetic, gene dosage compensatory mechanism by inactivation of one copy of X in cells. Random XCI of one of the parental chromosomes results in an approximately equal proportion of cells expressing alleles from either the maternally or paternally inherited active X, and is defined by the XCI ratio. Skewed XCI ratio is suggestive of non-random inactivation, which can play an important role in X-linked genetic conditions. Current methods rely on indirect, semi-quantitative DNA methylation-based assay to estimate XCI ratio. Here we report a direct approach to estimate XCI ratio by integrated, family-trio based whole-exome and mRNA sequencing using phase-by-transmission of alleles coupled with allele-specific expression analysis. We applied this method to in silico data and to a clinical patient with mild cognitive impairment but no clear diagnosis or understanding molecular mechanism underlying the phenotype. Simulation showed that phased and unphased heterozygous allele expression can be used to estimate XCI ratio. Segregation analysis of the patient's exome uncovered a de novo, interstitial, 1.7 Mb deletion on Xp22.31 that originated on the paternally inherited X and previously been associated with heterogeneous, neurological phenotype. Phased, allelic expression data suggested an 83∶20 moderately skewed XCI that favored the expression of the maternally inherited, cytogenetically normal X and suggested that the deleterious affect of the de novo event on the paternal copy may be offset by skewed XCI that favors expression of the wild-type X. This study shows the utility of integrated sequencing approach in XCI ratio estimation.

摘要

在女性中,X染色体失活(XCI)是一种表观遗传的基因剂量补偿机制,通过使细胞中的一条X染色体失活来实现。亲本染色体之一的随机XCI导致表达来自母系或父系遗传的活性X等位基因的细胞比例大致相等,这由XCI比率定义。XCI比率偏斜提示非随机失活,这在X连锁遗传病中可能起重要作用。目前的方法依赖于间接的、基于DNA甲基化的半定量检测来估计XCI比率。在此,我们报告一种直接方法,通过基于家系三联体的全外显子组和mRNA测序,并结合等位基因的传递相位和等位基因特异性表达分析来估计XCI比率。我们将此方法应用于计算机模拟数据以及一名患有轻度认知障碍但未明确诊断或了解该表型潜在分子机制的临床患者。模拟结果表明,分阶段和未分阶段的杂合等位基因表达可用于估计XCI比率。对该患者外显子组的分离分析发现,Xp22.31上存在一个1.7 Mb的新发间质性缺失,该缺失源自父系遗传的X染色体,此前已与多种神经学表型相关。分阶段的等位基因表达数据显示XCI呈83∶20的中度偏斜,有利于母系遗传的细胞遗传学正常X染色体的表达,这表明新发事件对父本拷贝的有害影响可能被有利于野生型X染色体表达的偏斜XCI所抵消。这项研究展示了综合测序方法在估计XCI比率方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ed5/4264736/4d24532dfb3b/pone.0113036.g001.jpg

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