German Cancer Research Center (DKFZ), Division Signaling and Functional Genomics and Heidelberg University, Heidelberg, Germany.
Elife. 2020 Feb 13;9:e53865. doi: 10.7554/eLife.53865.
Genetic screens are powerful tools for the functional annotation of genomes. In the context of multicellular organisms, interrogation of gene function is greatly facilitated by methods that allow spatial and temporal control of gene abrogation. Here, we describe a large-scale transgenic short guide (sg) RNA library for efficient CRISPR-based disruption of specific target genes in a constitutive or conditional manner. The library consists currently of more than 2600 plasmids and 1700 fly lines with a focus on targeting kinases, phosphatases and transcription factors, each expressing two sgRNAs under control of the Gal4/UAS system. We show that conditional CRISPR mutagenesis is robust across many target genes and can be efficiently employed in various somatic tissues, as well as the germline. In order to prevent artefacts commonly associated with excessive amounts of Cas9 protein, we have developed a series of novel UAS-Cas9 transgenes, which allow fine tuning of Cas9 expression to achieve high gene editing activity without detectable toxicity. Functional assays, as well as direct sequencing of genomic sgRNA target sites, indicates that the vast majority of transgenic sgRNA lines mediate efficient gene disruption. Furthermore, we conducted the so far largest fully transgenic CRISPR screen in any metazoan organism, which further supported the high efficiency and accuracy of our library and revealed many so far uncharacterized genes essential for development.
遗传筛选是对基因组进行功能注释的有力工具。在多细胞生物的背景下,通过允许基因缺失的空间和时间控制的方法,极大地促进了对基因功能的研究。在这里,我们描述了一个大规模的转基因短向导 (sg) RNA 文库,用于以组成型或条件方式高效地基于 CRISPR 破坏特定靶基因。该文库目前由超过 2600 个质粒和 1700 个品系组成,重点是针对激酶、磷酸酶和转录因子,每个品系都在 Gal4/UAS 系统的控制下表达两个 sgRNA。我们表明,条件性 CRISPR 诱变在许多靶基因中都是稳健的,并且可以在各种体组织以及生殖系中有效地应用。为了防止与 Cas9 蛋白过量相关的常见假象,我们开发了一系列新型 UAS-Cas9 转基因,其可以精细调节 Cas9 表达,以实现高基因编辑活性而没有可检测的毒性。功能测定以及 sgRNA 靶位点的直接测序表明,绝大多数转基因 sgRNA 系介导有效的基因破坏。此外,我们进行了迄今为止在任何后生动物中最大的全转基因 CRISPR 筛选,这进一步支持了我们文库的高效率和准确性,并揭示了许多目前尚未表征的对发育至关重要的基因。