Nitric oxide suppresses NLRP3 inflammasome activation and protects against LPS-induced septic shock

Kairui Mao(Shanghai Institutes for Biological Sciences), Shuzhen Chen(Center for Excellence in Molecular Cell Science), Mingkuan Chen(Institut Pasteur of Shanghai), Yonglei Ma(Institut Pasteur of Shanghai), Yan Wang(Institut Pasteur of Shanghai), Bo Huang(Chinese Academy of Sciences), Zhengyu He(Renji Hospital), Yan Zeng(Institut Pasteur of Shanghai), Yu Hu(Shanghai Institutes for Biological Sciences), Shuhui Sun(Fudan University), Jing Li(Center for Life Sciences), Xiaodong Wu(Chinese Academy of Sciences), Xiangrui Wang(Renji Hospital), Warren Strober(National Institutes of Health), Chang Chen(Chinese Academy of Sciences), Guangxun Meng(Institut Pasteur of Shanghai), Bing Sun(Shanghai Institutes for Biological Sciences)
Cell Research
January 15, 2013
Cited by 395Open Access
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Abstract

Inflammasomes are multi-protein complexes that trigger the activation of caspase-1 and the maturation of interleukin-1β (IL-1β), yet the regulation of these complexes remains poorly characterized. Here we show that nitric oxide (NO) inhibited the NLRP3-mediated ASC pyroptosome formation, caspase-1 activation and IL-1β secretion in myeloid cells from both mice and humans. Meanwhile, endogenous NO derived from iNOS (inducible form of NO synthase) also negatively regulated NLRP3 inflammasome activation. Depletion of iNOS resulted in increased accumulation of dysfunctional mitochondria in response to LPS and ATP, which was responsible for the increased IL-1β production and caspase-1 activation. iNOS deficiency or pharmacological inhibition of NO production enhanced NLRP3-dependent cytokine production in vivo, thus increasing mortality from LPS-induced sepsis in mice, which was prevented by NLRP3 deficiency. Our results thus identify NO as a critical negative regulator of the NLRP3 inflammasome via the stabilization of mitochondria. This study has important implications for the design of new strategies to control NLRP3-related diseases.


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