Integrated NLRP3, AIM2, NLRC4, Pyrin inflammasome activation and assembly drive PANoptosis

被引:0
|
作者
SuHyeon Oh
Jihye Lee
Jueun Oh
Gyoengju Yu
Haesun Ryu
Daesik Kim
SangJoon Lee
机构
[1] Ulsan National Institute of Science and Technology (UNIST),Department of Biological Science
[2] Sungkyunkwan University School of Medicine,Department of Precision Medicine
来源
关键词
Multiple Inflammasome; Inflammatory Cell Death; PANoptosis; Excellular ASC; PANoptosome;
D O I
暂无
中图分类号
学科分类号
摘要
Inflammasomes are important sentinels of innate immune defense; they sense pathogens and induce the cell death of infected cells, playing key roles in inflammation, development, and cancer. Several inflammasome sensors detect and respond to specific pathogen- and damage-associated molecular patterns (PAMPs and DAMPs, respectively) by forming a multiprotein complex with the adapters ASC and caspase-1. During disease, cells are exposed to several PAMPs and DAMPs, leading to the concerted activation of multiple inflammasomes. However, the molecular mechanisms that integrate multiple inflammasome sensors to facilitate optimal host defense remain unknown. Here, we discovered that simultaneous inflammasome activation by multiple ligands triggered multiple types of programmed inflammatory cell death, and these effects could not be mimicked by treatment with a pure ligand of any single inflammasome. Furthermore, NLRP3, AIM2, NLRC4, and Pyrin were determined to be members of a large multiprotein complex, along with ASC, caspase-1, caspase-8, and RIPK3, and this complex drove PANoptosis. Furthermore, this multiprotein complex was released into the extracellular space and retained as multiple inflammasomes. Multiple extracellular inflammasome particles could induce inflammation after their engulfment by neighboring macrophages. Collectively, our findings define a previously unknown regulatory connection and molecular interaction between inflammasome sensors, which drives the assembly of a multiprotein complex that includes multiple inflammasome sensors and cell death regulators. The discovery of critical interactions among NLRP3, AIM2, NLRC4, and Pyrin represents a new paradigm in understanding the functions of these molecules in innate immunity and inflammasome biology as well as identifying new therapeutic targets for NLRP3-, AIM2-, NLRC4- and Pyrin-mediated diseases.
引用
收藏
页码:1513 / 1526
页数:13
相关论文
共 50 条
  • [31] The role of NLRP3 and AIM2 in inflammasome activation during Brucella abortus infection
    Fernanda M. Marim
    Miriam M. Costa Franco
    Marco Tulio R. Gomes
    Maria Cruz Miraglia
    Guillermo H. Giambartolomei
    Sergio Costa Oliveira
    [J]. Seminars in Immunopathology, 2017, 39 : 215 - 223
  • [32] A role for the NLR family members NLRC4 and NLRP3 in sterile inflammasome activation in glial cells
    Guo, Haitao
    Freeman, Leslie
    David, Clement N.
    Brickey, Willie J.
    Jha, Sushmita
    Ting, Jenny P.
    [J]. JOURNAL OF IMMUNOLOGY, 2017, 198 (01):
  • [33] PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
    Xie, Min
    Yu, Yan
    Kang, Rui
    Zhu, Shan
    Yang, Liangchun
    Zeng, Ling
    Sun, Xiaofang
    Yang, Minghua
    Billiar, Timothy R.
    Wang, Haichao
    Cao, Lizhi
    Jiang, Jianxin
    Tang, Daolin
    [J]. NATURE COMMUNICATIONS, 2016, 7
  • [34] PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
    Min Xie
    Yan Yu
    Rui Kang
    Shan Zhu
    Liangchun Yang
    Ling Zeng
    Xiaofang Sun
    Minghua Yang
    Timothy R. Billiar
    Haichao Wang
    Lizhi Cao
    Jianxin Jiang
    Daolin Tang
    [J]. Nature Communications, 7
  • [35] Erythropoietin Abrogates Post-Ischemic Activation of the NLRP3, NLRC4, and AIM2 Inflammasomes in Microglia/Macrophages in a TAK1-Dependent Manner
    Heinisch, Ole
    Zeyen, Thomas
    Goldmann, Tobias
    Prinz, Marco
    Huber, Michael
    Jung, Jennifer
    Arik, Eren
    Habib, Shahin
    Slowik, Alexander
    Reich, Arno
    Schulz, Joerg B.
    Habib, Pardes
    [J]. TRANSLATIONAL STROKE RESEARCH, 2022, 13 (03) : 462 - 482
  • [36] Erythropoietin Abrogates Post-Ischemic Activation of the NLRP3, NLRC4, and AIM2 Inflammasomes in Microglia/Macrophages in a TAK1-Dependent Manner
    Ole Heinisch
    Thomas Zeyen
    Tobias Goldmann
    Marco Prinz
    Michael Huber
    Jennifer Jung
    Eren Arik
    Shahin Habib
    Alexander Slowik
    Arno Reich
    Jörg B. Schulz
    Pardes Habib
    [J]. Translational Stroke Research, 2022, 13 : 462 - 482
  • [37] Chronic cerebral hypoperfusion activates AIM2 and NLRP3 inflammasome
    Matsuyama, Hirofumi
    Shindo, Akihiro
    Shimada, Takuya
    Yata, Kenichiro
    Wakita, Hideaki
    Takahashi, Ryosuke
    Tomimoto, Hidekazu
    [J]. BRAIN RESEARCH, 2020, 1736
  • [38] Artemisia Extract Suppresses NLRP3 and AIM2 Inflammasome Activation by Inhibition of ASC Phosphorylation
    Kwak, Su-Bin
    Koppula, Sushruta
    In, Eun-Jung
    Sun, Xiao
    Kim, Young-Kyu
    Kim, Myong-Ki
    Lee, Kwang-Ho
    Kang, Tae-Bong
    [J]. MEDIATORS OF INFLAMMATION, 2018, 2018
  • [39] Variants in NLRP3 and NLRC4 inflammasome associate with susceptibility and severity of multiple sclerosis
    Soares, Jaine L. S.
    Oliveira, Enedina M. L.
    Pontillo, Alessandra
    [J]. MULTIPLE SCLEROSIS AND RELATED DISORDERS, 2019, 29 : 26 - 34
  • [40] The Salmonella pathogenicity island-2 subverts human NLRP3 and NLRC4 inflammasome responses
    Bierschenk, Damien
    Monteleone, Mercedes
    Moghaddas, Fiona
    Baker, Paul J.
    Masters, Seth L.
    Boucher, Dave
    Schroder, Kate
    [J]. JOURNAL OF LEUKOCYTE BIOLOGY, 2019, 105 (02) : 401 - 410