Structural basis for specific flagellin recognition by the NLR protein NAIP5

被引:0
|
作者
Xinru Yang
Fan Yang
Weiguang Wang
Guangzhong Lin
Zehan Hu
Zhifu Han
Yijun Qi
Liman Zhang
Jiawei Wang
Sen-Fang Sui
Jijie Chai
机构
[1] Innovation Center for Structural Biology,Department of Biological Chemistry and Molecular Pharmacology
[2] Tsinghua-Peking Joint Center for Life Sciences,undefined
[3] School of Life Sciences,undefined
[4] Tsinghua University,undefined
[5] Center for Plant Biology,undefined
[6] School of Life Sciences,undefined
[7] Tsinghua University,undefined
[8] State Key Laboratory of Membrane Biology,undefined
[9] Innovation Center for Structural Biology,undefined
[10] School of Life Sciences,undefined
[11] Tsinghua University,undefined
[12] Harvard Medical School,undefined
[13] and Program in Cellular and Molecular Medicine,undefined
[14] Boston Children's Hospital,undefined
[15] Max-Planck Institute for Plant Breeding Research,undefined
[16] Institute of Biochemistry,undefined
[17] University of Cologne,undefined
来源
Cell Research | 2018年 / 28卷
关键词
flagellin; NAIP5; NLRC4; cryo-EM;
D O I
暂无
中图分类号
学科分类号
摘要
The nucleotide-binding domain- and leucine-rich repeat (LRR)-containing proteins (NLRs) function as intracellular immune receptors to detect the presence of pathogen- or host-derived signals. The mechanisms of how NLRs sense their ligands remain elusive. Here we report the structure of a bacterial flagellin derivative in complex with the NLR proteins NAIP5 and NLRC4 determined by cryo-electron microscopy at 4.28 Å resolution. The structure revealed that the flagellin derivative forms two parallel helices interacting with multiple domains including BIR1 and LRR of NAIP5. Binding to NAIP5 results in a nearly complete burial of the flagellin derivative, thus stabilizing the active conformation of NAIP5. The extreme C-terminal side of the flagellin is anchored to a sterically constrained binding pocket of NAIP5, which likely acts as a structural determinant for discrimination of different bacterial flagellins by NAIP5, a notion further supported by biochemical data. Taken together, our results shed light on the molecular mechanisms underlying NLR ligand perception.
引用
收藏
页码:35 / 47
页数:12
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