4.6 Review

Mitochondria and the NLRP3 inflammasome: physiological and pathological relevance

Journal

ARCHIVES OF PHARMACAL RESEARCH
Volume 39, Issue 11, Pages 1503-1518

Publisher

PHARMACEUTICAL SOC KOREA
DOI: 10.1007/s12272-016-0827-4

Keywords

Interleukin 1; Innate immunity; ROS; Metabolic syndrome; Neurodegeneration

Funding

  1. Bio & Medical Technology Development Program Fund of the National Research Foundation [NRF-2015M3A9B6073846, NRF-2015M3A9B6073856]
  2. NRF [NRF-2013R1A2A2A01067985]
  3. Global Research Laboratory Grant of the National Research Foundation of Korea [K21004000003-12A0500-00310]
  4. Ulsan National Institute of Science and Technology Research Fund [2014M3A9D8034459]
  5. National Research Foundation of Korea [2015M3A9B6073846] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The NLRP3 inflammasome is assembled and activated in certain types of myeloid cells upon sensing microbe-derived toxins or host-derived danger signals. Activation of the NLRP3 inflammasome by endogenous ligands has been discovered in various disorders, including metabolic syndrome, type 2 diabetes, atherosclerosis, gout, reperfusion injury of the heart, neurodegeneration, such as Alzheimer's disease, chronic kidney diseases, and macular degeneration of the eyes. Despite the potential significance of the NLRP3 inflammasome in the pathogenesis of several diseases, details on the activation mechanism of the NLRP3 inflammasome by a variety of stimulators have yet to be reported. Emerging evidence suggests that mitochondrial events are associated with NLRP3 activation in disease conditions. Mitochondrial dysfunction acts upstream of NLRP3 activation by providing reactive oxygen species ( ROS) to trigger NLRP3 oligomerization or by inducing alpha-tubulin acetylation to relocate mitochondria to the proximity of NLRP3. In addition, mitochondria work as a platform for inflammasome assembly. Mitochondrial events may also lie downstream of NLRP3 activation. While the molecular mechanisms of mitochondrial dysfunction associated with NLRP3 activation are still unclear, they may involve the perturbation of mitochondria by K+ efflux and subsequent intracellular disequilibrium. Thus, mitochondria and NLRP3 machinery appear to be closely interwoven at multiple levels.

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