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Phosphorylation of cGAS by CDK1 impairs self-DNA sensing in mitosis

机译:CGA的CGA磷酸化损害有丝分裂中的自我DNA感测

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The cyclic GMP-AMP synthase (cGAS) is a widely used DNA sensor, which detects cytosolic DNA species without a preference of self or non-self microbial DNA in interphase to initiate innate immune response. How cGAS is regulated to avoid self-DNA sensing upon nuclear envelope breakdown (NEBD) during mitosis remains enigmatic. Here we show that cGAS is mostly localized in the cytoplasm in interphase and rapidly translocated to chromosomes upon NEBD in mitosis. The major mitotic kinase CDK1-cyclin B complex phosphorylates human cGAS at S305 or mouse cGAS at S291, which inhibits its ability to synthesize cGAMP upon mitotic entry. The type 1 phosphatase PP1 dephosphorylates cGAS upon mitotic exit to enable its DNA sensing ability. Our findings reveal a mechanism on how the DNA sensor cGAS is post-translationally regulated by cell cycle-dependent enzymes to ensure its proper activation for host defense of cytosolic DNA in interphase and inert to self-DNA in mitosis.
机译:环状GMP-AMP合酶(CGA)是广泛使用的DNA传感器,其检测细胞溶质DNA物种而不优选自身或非自自微生物DNA,以启动先天免疫应答。 CGA如何受到调节,以避免在有丝分裂期间对核包膜击穿(NEBD)的自我DNA感应仍然是神秘的。在这里,我们表明CGA主要在细胞质中局部局部化,并在有丝分裂中迅速向染色体逐渐倾向于染色体。主要的丝分裂激酶Cdk1-环键B复合物在S305或小鼠CGA下磷酸化人CGA,S291抑制其在有丝分裂入口上合成CGAMP的能力。 1型磷酸酶PP1在有丝分裂出口时去磷酸化CGA,以实现其DNA感测能力。我们的发现揭示了DNA传感器CGA如何通过细胞周期依赖性酶翻译后调节的机制,以确保其适当的激活胞质DNA的宿主防止在有丝分裂中的自我DNA中的胞质和惰性。

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