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Genome-scale CRISPR screening at high sensitivity with an empirically designed sgRNA library

机译:基因组规模Crispr在高灵敏度与经验设计的SGRNA库中的筛选

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In recent years, large-scale genetic screens using the CRISPR/Cas9 system have emerged as scalable approaches able to interrogate gene function with unprecedented efficiency and specificity in various biological contexts. By this means, functional dependencies on both the protein-coding and noncoding genome of numerous cell types in different organisms have been interrogated. However, screening designs vary greatly and criteria for optimal experimental implementation and library composition are still emerging. Given their broad utility in functionally annotating genomes, the application and interpretation of genome-scale CRISPR screens would greatly benefit from consistent and optimal design criteria. We report advantages of conducting viability screens in selected Cas9 single-cell clones in contrast to Cas9 bulk populations. We further systematically analyzed published CRISPR screens in human cells to identify single-guide (sg) RNAs with consistent high on-target and low off-target activity. Selected guides were collected in a novel genome-scale sgRNA library, which efficiently identifies core and context-dependent essential genes. We show how empirically designed libraries in combination with an optimized experimental design increase the dynamic range in gene essentiality screens at reduced library coverage.
机译:近年来,使用CRISPR / CAS9系统的大规模遗传屏幕被出现为能够以前所未有的效率和各种生物背景下的特异性询问基因的可扩展方法。通过这种方式,已经询问了不同生物中许多细胞类型的蛋白质编码和非编码基因组的功能依赖性。然而,筛选设计差异很大,最佳实验实施和图书馆组合物的标准仍在出现。鉴于他们在功能注释的基因组中的广泛效用,基因组级克切普普尔屏幕的应用和解释将极大地受益于一致和最佳的设计标准。与Cas9散装人群相比,我们报告了在选定的Cas9单细胞克隆中进行活力屏幕的优势。我们进一步系统地分析了人体细胞中的公开脆屏幕,以识别具有一致高靶和低靶向活动的单引导(SG)RNA。在新型基因组级SGRNA库中收集所选指南,其有效地识别核心和上下文依赖性基因。我们展示了经验设计的文库如何结合优化的实验设计,增加了在减少的图书馆覆盖下基因生物屏幕中的动态范围。

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