Alpha-kinase 1 is a cytosolic innate immune receptor for bacterial ADP-heptose

先天免疫系统 庚糖 模式识别受体 促炎细胞因子 激酶 受体 炎症 生物 细胞生物学 生物化学 免疫学 基因 突变体
作者
Ping‐Kun Zhou,Yang She,Na Dong,Peng Li,Huabin He,Alessio Borio,Qingcui Wu,Shan Lu,Xiaojun Ding,Yong Cao,Yue Xu,Wenqing Gao,Meng‐Qiu Dong,Jingjin Ding,Dacheng Wang,Alla Zamyatina,Feng Shao
出处
期刊:Nature [Nature Portfolio]
卷期号:561 (7721): 122-126 被引量:268
标识
DOI:10.1038/s41586-018-0433-3
摘要

Immune recognition of pathogen-associated molecular patterns (PAMPs) by pattern recognition receptors often activates proinflammatory NF-κB signalling1. Recent studies indicate that the bacterial metabolite d-glycero-β-d-manno-heptose 1,7-bisphosphate (HBP) can activate NF-κB signalling in host cytosol2–4, but it is unclear whether HBP is a genuine PAMP and the cognate pattern recognition receptor has not been identified. Here we combined a transposon screen in Yersinia pseudotuberculosis with biochemical analyses and identified ADP-β-d-manno-heptose (ADP-Hep), which mediates type III secretion system-dependent NF-κB activation and cytokine expression. ADP-Hep, but not other heptose metabolites, could enter host cytosol to activate NF-κB. A CRISPR–Cas9 screen showed that activation of NF-κB by ADP-Hep involves an ALPK1 (alpha-kinase 1)–TIFA (TRAF-interacting protein with forkhead-associated domain) axis. ADP-Hep directly binds the N-terminal domain of ALPK1, stimulating its kinase domain to phosphorylate and activate TIFA. The crystal structure of the N-terminal domain of ALPK1 and ADP-Hep in complex revealed the atomic mechanism of this ligand–receptor recognition process. HBP was transformed by host adenylyltransferases into ADP-heptose 7-P, which could activate ALPK1 to a lesser extent than ADP-Hep. ADP-Hep (but not HBP) alone or during bacterial infection induced Alpk1-dependent inflammation in mice. Our findings identify ALPK1 and ADP-Hep as a pattern recognition receptor and an effective immunomodulator, respectively. The bacterial metabolite ADP-heptose activates NF-κB in host cells via alpha-kinase 1 and the TIFA–TRAF signalling pathway.
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