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CRISPR whole-genome screening identifies new necroptosis regulators and RIPK1 alternative splicing

机译:CRISPR全基因组筛选可识别新的坏死性调节因子和RIPK1替代剪接

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摘要

The necroptotic cell death pathway is a key component of human pathogen defense that can become aberrantly derepressed during tissue homeostasis to contribute to multiple types of tissue damage and disease. While formation of the necrosome kinase signaling complex containing RIPK1, RIPK3, and MLKL has been extensively characterized, additional mechanisms of its regulation and effector functions likely remain to be discovered. We screened 19,883 mouse protein-coding genes by CRISPR/Cas9-mediated gene knockout for resistance to cytokine-induced necroptosis and identified 112 regulators and mediators of necroptosis, including 59 new candidate pathway components with minimal or no effect on cell growth in the absence of necroptosis induction. Among these, we further characterized the function of PTBP1, an RNA binding protein whose activity is required to maintain RIPK1 protein abundance by regulating alternative splice-site selection.
机译:坏死性细胞死亡途径是人类病原体防御的关键组成部分,在组织稳态过程中其可能会异常抑制,从而导致多种类型的组织损伤和疾病。尽管已经广泛表征了包含RIPK1,RIPK3和MLKL的坏死激酶信号转导复合物的形成,但其调节和效应子功能的其他机制仍有待发现。我们通过CRISPR / Cas9介导的基因敲除方法筛选了19,883个小鼠蛋白质编码基因对细胞因子诱导的坏死病的抗性,并鉴定了112种坏死病的调节剂和介质,包括59种新的候选途径成分,在没有肝素的情况下对细胞生长的影响很小或没有影响。坏死病诱导。其中,我们进一步表征了PTBP1的功能,PTBP1是一种RNA结合蛋白,其活性需要通过调节替代剪接位点的选择来维持RIPK1蛋白的丰度。

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