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RIPK1- and RIPK3-induced cell death mode is determined by target availability.

机译:RIPK1和RIPK3诱导的细胞死亡模式取决于靶标的可用性。

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Both receptor-interacting protein kinase 1 (RIPK1) and RIPK3 can signal cell death following death receptor ligation. To study the requirements for RIPK-triggered cell death in the absence of death receptor signaling, we engineered inducible versions of RIPK1 and RIPK3 that can be activated by dimerization with the antibiotic coumermycin. In the absence of TNF or other death ligands, expression and dimerization of RIPK1 was sufficient to cause cell death by caspase- or RIPK3-dependent mechanisms. Dimerized RIPK3 induced cell death by an MLKL-dependent mechanism but, surprisingly, also induced death mediated by FADD, caspase 8 and RIPK1. Catalytically active RIPK3 kinase domains were essential for MLKL-dependent but not for caspase 8-dependent death. When RIPK1 or RIPK3 proteins were dimerized, the mode of cell death was determined by the availability of downstream molecules such as FADD, caspase 8 and MLKL. These observations imply that rather than a 'switch' operating between the two modes of cell death, the final mechanism depends on levels of the respective signaling and effector proteins.
机译:受体相互作用蛋白激酶1(RIPK1)和RIPK3均可在死亡受体连接后发出细胞死亡信号。为了研究在没有死亡受体信号的情况下RIPK触发的细胞死亡的需求,我们设计了诱导型的RIPK1和RIPK3,可以通过与抗生素香豆霉素二聚化来激活。在没有TNF或其他死亡配体的情况下,RIPK1的表达和二聚化足以通过caspase或RIPK3依赖性机制引起细胞死亡。二聚化的RIPK3通过MLKL依赖性机制诱导细胞死亡,但令人惊讶的是,还诱导了FADD,胱天蛋白酶8和RIPK1介导的死亡。具有催化活性的RIPK3激酶结构域对于MLKL依赖但对caspase 8依赖的死亡不是必需的。当RIPK1或RIPK3蛋白被二聚化时,细胞死亡的方式取决于下游分子如FADD,caspase 8和MLKL的可用性。这些观察结果暗示,最终的机制取决于各自信号传导和效应蛋白的水平,而不是在两种细胞死亡模式之间进行“切换”。

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