Mercury and arsenic attenuate canonical and non-canonical NLRP3 inflammasome activation

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作者
Huijeong Ahn
Jeongeun Kim
Seung Goo Kang
Sung-il Yoon
Hyun-Jeong Ko
Pyeung-Hyeun Kim
Eui-Ju Hong
Beum-Soo An
Eunsong Lee
Geun-Shik Lee
机构
[1] Kangwon National University,College of Veterinary Medicine and Institute of Veterinary Science
[2] Kangwon National University,Department of Molecular Bioscience, School of Biomedical Science
[3] Kangwon National University,Division of Biomedical Convergence, College of Biomedical Science
[4] College of Pharmacy,Laboratory of Microbiology and Immunology
[5] Kangwon National University,College of Veterinary Medicine and Institute of Veterinary Science
[6] Chungnam National University,Department of Biomaterial Science
[7] College of Natural Resources and Life Science,undefined
[8] Pusan National University,undefined
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关键词
NLRP3 Inflammasome Activation; AIM2 Inflammasome; Absent In Melanoma 2 (AIM2); PML Protein; Obovatol;
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摘要
Exposure to heavy metals can cause several diseases associated with the immune system. Although the effects of heavy metals on production of inflammatory cytokines have been previously studied, the role of heavy metals in inflammasome activation remains poorly studied. The inflammasome is an intracellular multi-protein complex that detects intracellular danger signals, resulting in inflammatory responses such as cytokine maturation and pyroptosis. In this study, we elucidated the effects of four heavy metals, including cadmium (Cd), mercury (Hg), arsenic (As), and lead (Pb), on the activation of NLRP3, NLRC4, and AIM2 inflammasomes. In our results, mercury and arsenic inhibited interleukin (IL)-1β and IL-18 secretion resulting from canonical and non-canonical NLRP3 inflammasome activation in macrophages and attenuated elevation of serum IL-1β in response to LPS treatment in mice. In the mechanical studies, mercury interrupted production of mitochondrial reactive oxygen species, release of mitochondrial DNA, and activity of recombinant caspase-1, whereas arsenic down-regulated expression of promyelocytic leukemia protein. Both mercury and arsenic inhibited Asc pyroptosome formation and gasdermin D cleavage. Thus, we suggest that exposure to mercury and/or arsenic could disrupt inflammasome-mediated inflammatory responses, which might cause unexpected side effects.
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