Cyclic GMP-AMP synthase (cGAS) recognition of cytosolic DNA is critical for immune responses to pathogen replication, cellular stress, and cancer. Existing structures of the mouse cGAS-DNA complex provide a model for enzyme activation but do not explain why human cGAS exhibits severely reduced levels of cyclic GMP-AMP (cGAMP) synthesis compared to other mammals. Here, we discover that enhanced DNA-length specificity restrains human cGAS activation. Using reconstitution of cGAMP signaling in bacteria, we mapped the determinant of human cGAS regulation to two amino acid substitutions in the DNA-binding surface. Human-specific substitutions are necessary and sufficient to direct preferential detection of long DNA. Crystal structures reveal why removal of human substitutions relaxes DNA-length specificity and explain how human-specific DNA interactions favor cGAS oligomerization. These results define how DNA-sensing in humans adapted for enhanced specificity and provide a model of the active human cGAS-DNA complex to enable structure-guided design of cGAS therapeutics.
Structure of the Human cGAS-DNA Complex Reveals Enhanced Control of Immune Surveillance.
人类 cGAS-DNA 复合物的结构揭示了免疫监视的增强控制
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作者:Zhou Wen, Whiteley Aaron T, de Oliveira Mann Carina C, Morehouse Benjamin R, Nowak RadosÅaw P, Fischer Eric S, Gray Nathanael S, Mekalanos John J, Kranzusch Philip J
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2018 | 起止号: | 2018 Jul 12; 174(2):300-311 |
| doi: | 10.1016/j.cell.2018.06.026 | 种属: | Human |
| 研究方向: | 免疫/内分泌 | ||
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