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Viral and metazoan poxins are cGAMP-specific nucleases that restrict cGAS-STING signaling

机译:病毒和后生毒素是限制cGAS-STING信号传导的cGAMP特异性核酸酶

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摘要

Cytosolic DNA triggers innate immune responses through activation of cyclic GMP–AMP synthase (cGAS) and production of the cyclic dinucleotide second messenger 2′3′ cGAMP. 2′3′ cGAMP is a potent inducer of immune signaling, but no intracellular nucleases are known to cleave 2′3′ cGAMP and prevent activation of the receptor stimulator of interferon genes (STING). Through a biochemical screen analyzing 24 mammalian viruses, here we identify poxvirus immune nucleases (poxins) as a family of 2′3′ cGAMP-specific degrading enzymes. Poxins cleave 2′3′ cGAMP to restrict STING-dependent signaling, and deletion of the poxin gene (B2R) attenuates vaccinia virus replication in vivo. Crystal structures of vaccinia virus poxin in pre- and post-reactive states define the mechanism of selective 2′3′ cGAMP degradation through metal-independent cleavage of the 3′–5′ bond, converting 2′3′ cGAMP into linear Gp[2′–5′]Ap[3′]. Poxins are conserved in mammalian poxviruses, and remarkably, we further identify functional poxin homologues in the genomes of moths and butterflies and the baculoviruses which infect them. Baculovirus and insect host poxin homologues retain selective 2′3′ cGAMP degradation activity, suggesting an ancient role for poxins in cGAS-STING regulation. Our results define poxins as a family of 2′3′ cGAMP-specific nucleases and demonstrate a mechanism for how viruses evade innate immunity.
机译:胞质DNA通过激活环状GMP-AMP合酶(cGAS)和产生环状二核苷酸第二信使2'3'cGAMP 来触发先天免疫应答。 2'3'cGAMP是免疫信号的有效诱导剂,但尚无细胞内核酸酶能裂解2'3'cGAMP并阻止干扰素基因受体刺激物(STING)的激活。通过对24种哺乳动物病毒的生化筛选分析,在这里我们确定了痘病毒免疫核酸酶(poxin)是2'3'cGAMP特异性降解酶的家族。 Poxins裂解2'3'cGAMP以限制STING依赖性信号传导,而Poxin基因(B2R)的缺失会减弱牛痘病毒在体内的复制。牛痘病毒poxin的晶体结构在反应前和反应后状态定义了通过金属无关的3'–5'键裂解将2'3'cGAMP转化为线性Gp [2]从而选择性降解2'3'cGAMP的机制′-5′] Ap [3′]。毒素在哺乳动物痘病毒中是保守的,而且值得注意的是,我们进一步在蛾和蝴蝶以及感染它们的杆状病毒的基因组中鉴定了功能性毒素同源物。杆状病毒和昆虫宿主毒素的同源物保留了选择性的2'3'cGAMP降解活性,这提示了毒素在cGAS-STING调控中的古老作用。我们的结果将Poxins定义为2'3'cGAMP特异性核酸酶家族,并证明了病毒逃避先天免疫的机制。

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