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CRISPR/Cas9 Allows Efficient and Complete Knock-In of a Destabilization Domain-Tagged Essential Protein in a Human Cell Line Allowing Rapid Knockdown of Protein Function

机译:CRISPR / Cas9允许在人类细胞系中高效和完全敲除去稳定化域标记的必需蛋白从而迅速敲除蛋白功能

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摘要

Although modulation of protein levels is an important tool for study of protein function, it is difficult or impossible to knockdown or knockout genes that are critical for cell growth or viability. For such genes, a conditional knockdown approach would be valuable. The FKBP protein-based destabilization domain (DD)-tagging approach, which confers instability to the tagged protein in the absence of the compound Shield-1, has been shown to provide rapid control of protein levels determined by Shield-1 concentration. Although a strategy to knock-in DD-tagged protein at the endogenous loci has been employed in certain parasite studies, partly due to the relative ease of knock-in as a result of their mostly haploid lifecycles, this strategy has not been demonstrated in diploid or hyperploid mammalian cells due to the relative difficulty of achieving complete knock-in in all alleles.The recent advent of CRISPR/Cas9 homing endonuclease-mediated targeted genome cleavage has been shown to allow highly efficient homologous recombination at the targeted locus. We therefore assessed the feasibility of using CRISPR/Cas9 to achieve complete knock-in to DD-tag the essential gene Treacher Collins-Franceschetti syndrome 1 (TCOF1) in human 293T cells. Using a double antibiotic selection strategy to select clones with at least two knock-in alleles, we obtained numerous complete knock-in clones within three weeks of initial transfection. DD-TCOF1 expression in the knock-in cells was Shield-1 concentration-dependent, and removal of Shield-1 resulted in destabilization of DD-TCOF1 over the course of hours. We further confirmed that the tagged TCOF1 retained the nucleolar localization of the wild-type untagged protein, and that destabilization of DD-TCOF1 resulted in impaired cell growth, as expected for a gene implicated in ribosome biogenesis. CRISPR/Cas9-mediated homologous recombination to completely knock-in a DD tag likely represents a generalizable and efficient strategy to achieve rapid modulation of protein levels in mammalian cells.
机译:尽管调节蛋白质水平是研究蛋白质功能的重要工具,但很难或不可能敲除或敲除对细胞生长或存活至关重要的基因。对于此类基因,有条件的敲除方法将是有价值的。基于FKBP蛋白质的去稳定结构域(DD)标记方法可在不存在化合物Shield-1的情况下使标记的蛋白质不稳定,已显示可快速控制由Shield-1浓度确定的蛋白质水平。尽管在某些寄生虫研究中已采用在内源性基因座处敲除DD标签蛋白的策略,部分原因是由于其主要是单倍体生命周期而使敲入相对容易,但该策略尚未在二倍体中得到证实。由于在所有等位基因中实现完全敲入相对困难,因此哺乳动物或双倍体哺乳动物细胞或超倍体哺乳动物细胞。CRISPR / Cas9归巢内切核酸酶介导的靶向基因组切割的最新出现已显示可在靶基因座进行高效同源重组。因此,我们评估了使用CRISPR / Cas9完全敲入DD标签人类293T细胞中必需基因Treacher Collins-Franceschetti综合征1(TCOF1)的可行性。使用双重抗生素选择策略选择具有至少两个敲入等位基因的克隆,我们在初始转染后的三周内获得了许多完整的敲入克隆。敲入细胞中的DD-TCOF1表达是Shield-1浓度依赖性的,去除Shield-1会导致DD-TCOF1在数小时内不稳定。我们进一步证实,标记的TCOF1保留了野生型未标记蛋白的核仁定位,并且DD-TCOF1的不稳定导致细胞生长受损,这与牵涉核糖体生物发生的基因所期望的一样。 CRISPR / Cas9介导的同源重组以完全敲入DD标签可能代表了实现哺乳动物细胞中蛋白质水平快速调节的普遍有效策略。

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