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7q11.23 剂量依赖性失调会影响人类多能干细胞中与疾病相关谱系中的转录程序。

7q11.23 dosage-dependent dysregulation in human pluripotent stem cells affects transcriptional programs in disease-relevant lineages.

机构信息

Department of Experimental Oncology, European Institute of Oncology (Istituto di Ricovero e Cura a Carattere Scientifico, IRCCS), Milan, Italy.

Lieber Institute for Brain Development, Baltimore, Maryland, USA.

出版信息

Nat Genet. 2015 Feb;47(2):132-41. doi: 10.1038/ng.3169. Epub 2014 Dec 15.

Abstract

Cell reprogramming promises to make characterization of the impact of human genetic variation on health and disease experimentally tractable by enabling the bridging of genotypes to phenotypes in developmentally relevant human cell lineages. Here we apply this paradigm to two disorders caused by symmetrical copy number variations of 7q11.23, which display a striking combination of shared and symmetrically opposite phenotypes--Williams-Beuren syndrome and 7q-microduplication syndrome. Through analysis of transgene-free patient-derived induced pluripotent stem cells and their differentiated derivatives, we find that 7q11.23 dosage imbalance disrupts transcriptional circuits in disease-relevant pathways beginning in the pluripotent state. These alterations are then selectively amplified upon differentiation of the pluripotent cells into disease-relevant lineages. A considerable proportion of this transcriptional dysregulation is specifically caused by dosage imbalances in GTF2I, which encodes a key transcription factor at 7q11.23 that is associated with the LSD1 repressive chromatin complex and silences its dosage-sensitive targets.

摘要

细胞重编程有望通过在发育相关的人类细胞谱系中连接基因型和表型,使人类遗传变异对健康和疾病影响的特征在实验上变得可行。在这里,我们将这一范例应用于两种由 7q11.23 对称拷贝数变异引起的疾病,它们表现出惊人的共享和对称相反表型的组合——威廉姆斯-贝伦综合征和 7q 微重复综合征。通过对无转基因的患者来源诱导多能干细胞及其分化衍生物进行分析,我们发现 7q11.23 剂量失衡会在多能状态下破坏疾病相关途径中的转录电路。然后,这些改变会在多能细胞分化为疾病相关谱系时被选择性放大。这种转录失调的很大一部分是由 GTF2I 的剂量失衡引起的,GTF2I 编码 7q11.23 上的一个关键转录因子,它与 LSD1 抑制性染色质复合物相关,并沉默其剂量敏感的靶标。

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