Yumlu Saniye, Stumm Jürgen, Bashir Sanum, Dreyer Anne-Kathrin, Lisowski Pawel, Danner Eric, Kühn Ralf
Max-Delbrück-Centrum für Molekulare Medizin, 13125 Berlin, Germany; Berlin Institute of Health, Kapelle-Ufer 2, 10117 Berlin, Germany.
Max-Delbrück-Centrum für Molekulare Medizin, 13125 Berlin, Germany; Helmholtz Center Munich, 85764 Neuherberg, Germany.
Methods. 2017 May 15;121-122:29-44. doi: 10.1016/j.ymeth.2017.05.009.
Human induced pluripotent stem cells (hiPSCs) represent an ideal in vitro platform to study human genetics and biology. The recent advent of programmable nucleases makes also the human genome amenable to experimental genetics through either the correction of mutations in patient-derived iPSC lines or the de novo introduction of mutations into otherwise healthy iPSCs. The production of specific and sometimes complex genotypes in multiple cell lines requires efficient and streamlined gene editing technologies. In this article we provide protocols for gene editing in hiPSCs. We presently achieve high rates of gene editing at up to three loci using a modified iCRISPR system. This system includes a doxycycline inducible Cas9 and sgRNA/reporter plasmids for the enrichment of transfected cells by fluorescence-activated cell sorting (FACS). Here we cover the selection of target sites, vector construction, transfection, and isolation and genotyping of modified hiPSC clones.
人类诱导多能干细胞(hiPSC)是研究人类遗传学和生物学的理想体外平台。可编程核酸酶的最新出现,使得通过纠正患者来源的iPSC系中的突变或在其他方面健康的iPSC中从头引入突变,人类基因组也适用于实验遗传学。在多个细胞系中产生特定的、有时是复杂的基因型需要高效且简化的基因编辑技术。在本文中,我们提供了hiPSC基因编辑的方案。目前,我们使用改良的iCRISPR系统在多达三个位点实现了高基因编辑率。该系统包括一个强力霉素诱导型Cas9以及用于通过荧光激活细胞分选(FACS)富集转染细胞的sgRNA/报告质粒。在这里,我们涵盖了靶位点的选择、载体构建、转染以及修饰的hiPSC克隆的分离和基因分型。