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Multiplex enCas12a screens detect functional buffering among paralogs otherwise masked in monogenic Cas9 knockout screens

机译:Multiplex Encas12A屏幕检测在单身Cas9敲除屏幕中掩盖的ParaLogs之间的功能缓冲

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Background Pooled library CRISPR/Cas9 knockout screening across hundreds of cell lines has identified genes whose disruption leads to fitness defects, a critical step in identifying candidate cancer targets. However, the number of essential genes detected from these monogenic knockout screens is low compared to the number of constitutively expressed genes in a cell. Results Through a systematic analysis of screen data in cancer cell lines generated by the Cancer Dependency Map, we observe that half of all constitutively expressed genes are never detected in any CRISPR screen and that these never-essentials are highly enriched for paralogs. We investigated functional buffering among approximately 400 candidate paralog pairs using CRISPR/enCas12a dual-gene knockout screening in three cell lines. We observe 24 synthetic lethal paralog pairs that have escaped detection by monogenic knockout screens at stringent thresholds. Nineteen of 24 (79%) synthetic lethal interactions are present in at least two out of three cell lines and 14 of 24 (58%) are present in all three cell lines tested, including alternate subunits of stable protein complexes as well as functionally redundant enzymes. Conclusions Together, these observations strongly suggest that functionally redundant paralogs represent a targetable set of genetic dependencies that are systematically under-represented among cell-essential genes in monogenic CRISPR-based loss of function screens.
机译:背景库池克劳斯克/ Cas9淘汰数百个细胞系的敲除筛选,鉴定了其破坏导致健身缺陷的基因,这是识别候选癌症靶标的关键步骤。然而,与细胞中的组成型表达基因的数量相比,从这些单生敲除屏幕检测到的基因数量低。结果通过癌症依赖图产生的癌细胞系中的筛选数据的系统分析,观察到所有组成表达基因的一半从未在任何CRISPR屏幕中检测到,并且这些从不重要的是患有副植物的高度富集。我们在三种细胞系中使用CRISPR / ENCAS12A双基因敲除筛选在大约400名候选ParaLoG对中调查了功能缓冲。我们观察到24种合成致命的瘫痪对,该对已经在严格的阈值下通过单体敲除屏幕进行了检测。在24个(79%)的十九个(79%)中存在于三种细胞中的至少两个中,并且在所有三种细胞系中存在24条(58%),包括稳定蛋白质复合物的交替亚基以及功能冗余酶。结论在一起,这些观察结果强烈表明,功能冗余的常规术代表了一种可占领遗传依赖性,这些遗传依赖性在细胞 - 必需基因中在单一的基于克里普尔的功能屏幕中产生的遗传依赖性。

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