Crystal Structure of NLRC4 Reveals Its Autoinhibition Mechanism

Zehan Hu(Beijing Normal University), Chuangye Yan(Center for Life Sciences), Peiyuan Liu(Center for Life Sciences), Zhiwei Huang(Harbin Institute of Technology), Rui Ma(Center for Life Sciences), Chenlu Zhang(Center for Life Sciences), Ruiyong Wang(Zhengzhou University), Yueteng Zhang(Zhengzhou University), Fabio Martinon(University of Lausanne), Di Miao(Center for Life Sciences), Haiteng Deng(Center for Life Sciences), Jiawei Wang(Center for Life Sciences), Junbiao Chang(Zhengzhou University), Jijie Chai(Center for Life Sciences)
Science
June 14, 2013
Cited by 397Open Access
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Abstract

Nucleotide-binding and oligomerization domain-like receptor (NLR) proteins oligomerize into multiprotein complexes termed inflammasomes when activated. Their autoinhibition mechanism remains poorly defined. Here, we report the crystal structure of mouse NLRC4 in a closed form. The adenosine diphosphate-mediated interaction between the central nucleotide-binding domain (NBD) and the winged-helix domain (WHD) was critical for stabilizing the closed conformation of NLRC4. The helical domain HD2 repressively contacted a conserved and functionally important α-helix of the NBD. The C-terminal leucine-rich repeat (LRR) domain is positioned to sterically occlude one side of the NBD domain and consequently sequester NLRC4 in a monomeric state. Disruption of ADP-mediated NBD-WHD or NBD-HD2/NBD-LRR interactions resulted in constitutive activation of NLRC4. Together, our data reveal the NBD-organized cooperative autoinhibition mechanism of NLRC4 and provide insight into its activation.


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