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Common genetic variation drives molecular heterogeneity in human iPSCs

机译:常见的遗传变异驱动人iPSC的分子异质性

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摘要

Induced pluripotent stem cell (iPSC) technology has enormous potential to provide improved cellular models of human disease. However, variable genetic and phenotypic characterisation of many existing iPSC lines limits their potential use for research and therapy. Here, we describe the systematic generation, genotyping and phenotyping of 711 iPSC lines derived from 301 healthy individuals by the Human Induced Pluripotent Stem Cells Initiative (HipSci: ). Our study outlines the major sources of genetic and phenotypic variation in iPSCs and establishes their suitability as models of complex human traits and cancer. Through genome-wide profiling we find that 5-46% of the variation in different iPSC phenotypes, including differentiation capacity and cellular morphology, arises from differences between individuals. Additionally, we assess the phenotypic consequences of rare, genomic copy number mutations that are repeatedly observed in iPSC reprogramming and present a comprehensive map of common regulatory variants affecting the transcriptome of human pluripotent cells.
机译:诱导多能干细胞(iPSC)技术具有巨大的潜力,可以提供改进的人类疾病细胞模型。但是,许多现有iPSC品系的可变遗传和表型特征限制了它们在研究和治疗中的潜在用途。在这里,我们描述了人类诱导多能干细胞计划(HipSci :)从301名健康个体中衍生出的711个iPSC系的系统生成,基因分型和表型。我们的研究概述了iPSC中遗传和表型变异的主要来源,并确立了它们作为复杂人类特征和癌症模型的适用性。通过全基因组分析,我们发现不同iPSC表型的5-46%变异(包括分化能力和细胞形态)源自个体之间的差异。此外,我们评估了在iPSC重编程中反复观察到的罕见的基因组拷贝数突变的表型后果,并展示了影响人类多能细胞转录组的常见调控变异的综合图谱。

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