cGLRs are a diverse family of pattern recognition receptors in innate immunity

cGLRs是先天免疫中一类多样化的模式识别受体。

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作者:Yao Li ,Kailey M Slavik ,Hunter C Toyoda ,Benjamin R Morehouse ,Carina C de Oliveira Mann ,Anamaria Elek ,Shani Levy ,Zhenwei Wang ,Kepler S Mears ,Jingjing Liu ,Dmitry Kashin ,Ximing Guo ,Tali Mass ,Arnau Sebé-Pedrós ,Frank Schwede ,Philip J Kranzusch

Abstract

Cyclic GMP-AMP synthase (cGAS) is an enzyme in human cells that controls an immune response to cytosolic DNA. Upon binding DNA, cGAS synthesizes a nucleotide signal 2'3'-cGAMP that activates STING-dependent downstream immunity. Here, we discover that cGAS-like receptors (cGLRs) constitute a major family of pattern recognition receptors in innate immunity. Building on recent analysis in Drosophila, we identify >3,000 cGLRs present in nearly all metazoan phyla. A forward biochemical screening of 150 animal cGLRs reveals a conserved mechanism of signaling including response to dsDNA and dsRNA ligands and synthesis of isomers of the nucleotide signals cGAMP, c-UMP-AMP, and c-di-AMP. Combining structural biology and in vivo analysis in coral and oyster animals, we explain how synthesis of distinct nucleotide signals enables cells to control discrete cGLR-STING signaling pathways. Our results reveal cGLRs as a widespread family of pattern recognition receptors and establish molecular rules that govern nucleotide signaling in animal immunity. Keywords: STING; cGAS; cGLR; cyclic dinucleotides; innate immunity; pattern recognition receptor.

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