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Structural and functional analysis reveals that human OASL binds dsRNA to enhance RIG-I signaling

机译:结构和功能分析表明,人OASL结合dsRNA增强RIG-I信号传导

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The oligoadenylate synthetase (OAS) enzymes are cytoplasmic dsRNA sensors belonging to the antiviral innate immune system. Upon binding to viral dsRNA, the OAS enzymes synthesize 2'-5' linked oligoadenylates (2-5As) that initiate an RNA decay pathway to impair viral replication. The human OAS-like (OASL) protein, however, does not harbor the catalytic activity required for synthesizing 2-5As and differs from the other human OAS family members by having two C-terminal ubiquitin-like domains. In spite of its lack of enzymatic activity, human OASL possesses antiviral activity. It was recently demonstrated that the ubiquitin-like domains of OASL could substitute for K63-linked poly-ubiquitin and interact with the CARDs of RIG-I and thereby enhance RIG-I signaling. However, the role of the OAS-like domain of OASL remains unclear. Here we present the crystal structure of the OAS-like domain, which shows a striking similarity with activated OAS1. Furthermore, the structure of the OAS-like domain shows that OASL has a dsRNA binding groove. We demonstrate that the OAS-like domain can bind dsRNA and that mutating key residues in the dsRNA binding site is detrimental to the RIG-I signaling enhancement. Hence, binding to dsRNA is an important feature of OASL that is required for enhancing RIG-I signaling.
机译:寡腺苷酸合成酶(OAS)酶是属于抗病毒先天免疫系统的胞质dsRNA传感器。与病毒dsRNA结合后,OAS酶合成2'-5'连接的寡腺苷酸(2-5As),它们会启动RNA衰变途径来削弱病毒复制。然而,人类OAS样(OASL)蛋白不具有合成2-5As所需的催化活性,并且与其他人类OAS家族成员不同之处在于具有两个C末端泛素样结构域。尽管其缺乏酶促活性,但人OASL具有抗病毒活性。最近证实,OASL的遍在蛋白样结构域可以代替K63连接的聚遍在蛋白并与RIG-1的CARD相互作用,从而增强RIG-1的信号传导。但是,OASL的类似OAS的域的作用仍不清楚。在这里,我们介绍了OAS样域的晶体结构,它与激活的OAS1具有惊人的相似性。此外,OAS样域的结构表明OASL具有dsRNA结合槽。我们证明,OAS样域可以结合dsRNA,并且dsRNA结合位点中的关键残基突变对RIG-I信号增强是有害的。因此,与dsRNA的结合是OASL的重要特征,这是增强RIG-I信号传导所必需的。

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