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High-Resolution CRISPR Screens Reveal Fitness Genes and Genotype-Specific Cancer Liabilities

机译:高分辨率CRISPR筛查揭示了健身基因和特定基因型的癌症责任

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摘要

The ability to perturb genes in human cells is crucial for elucidating gene function and holds great potential for finding therapeutic targets for diseases such as cancer. To extend the catalog of human core and context-dependent fitness genes, we have developed a high-complexity second-generation genome-scale CRISPR-Cas9 gRNA library and applied it to fitness screens in five human cell lines. Using an improved Bayesian analytical approach, we consistently discover 5-fold more fitness genes than were previously observed. We present a list of 1,580 human core fitness genes and describe their general properties. Moreover, we demonstrate that context-dependent fitness genes accurately recapitulate pathway-specific genetic vulnerabilities induced by known oncogenes and reveal cell-type-specific dependencies for specific receptor tyrosine kinases, even in oncogenic KRAS backgrounds. Thus, rigorous identification of human cell line fitness genes using a high-complexity CRISPR-Cas9 library affords a high-resolution view of the genetic vulnerabilities of a cell.
机译:扰乱人类细胞中基因的能力对于阐明基因功能至关重要,并且在寻找诸如癌症等疾病的治疗靶标方面具有巨大潜力。为了扩展人类核心和背景相关适应性基因的目录,我们开发了高复杂度的第二代基因组规模的CRISPR-Cas9 gRNA文库,并将其应用于五个人类细胞系的适应性筛查。使用改进的贝叶斯分析方法,我们不断发现健身基因比以前观察到的多5倍。我们提出了1,580个人类核心适应基因的清单,并描述了它们的一般特性。此外,我们证明了上下文相关的适应性基因准确地概括了已知致癌基因诱导的途径特异性遗传脆弱性,并揭示了特定受体酪氨酸激酶的细胞类型特异性依赖性,即使在致癌的KRAS背景中也是如此。因此,使用高复杂度的CRISPR-Cas9文库对人细胞系适应性基因进行严格鉴定,可提供高分辨率的细胞遗传脆弱性视图。

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