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Merck
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  • Ubiquitination as a key regulatory mechanism for O3-induced cutaneous redox inflammasome activation.

Ubiquitination as a key regulatory mechanism for O3-induced cutaneous redox inflammasome activation.

Redox biology (2022-08-27)
Francesca Ferrara, Valeria Cordone, Alessandra Pecorelli, Mascia Benedusi, Erika Pambianchi, Anna Guiotto, Andrea Vallese, Franco Cervellati, Giuseppe Valacchi
摘要

NLRP1 is one of the major inflammasomes modulating the cutaneous inflammatory responses and therefore linked to a variety of cutaneous conditions. Although NLRP1 has been the first inflammasome to be discovered, only in the past years a significant progress was achieved in understanding the molecular mechanism and the stimuli behind its activation. In the past decades a crescent number of studies have highlighted the role of air pollutants as Particulate Matter (PM), Cigarette Smoke (CS) and Ozone (O3) as trigger stimuli for inflammasomes activation, especially via Reactive Oxygen Species (ROS) mediators. However, whether NLRP1 can be modulated by air pollutants via oxidative stress and the mechanism behind its activation is still poorly understood. Here we report for the first time that O3, one of the most toxic pollutants, activates the NLRP1 inflammasome in human keratinocytes via oxidative stress mediators as hydrogen peroxide (H2O2) and 4-hydroxy-nonenal (4HNE). Our data suggest that NLRP1 represents a target protein for 4HNE adduction that possibly leads to its proteasomal degradation and activation via the possible involvement of E3 ubiquitin ligase UBR2. Of note, Catalase (Cat) treatment prevented inflammasome assemble and inflammatory cytokines release as well as NLRP1 ubiquitination in human keratinocytes upon O3 exposure. The present work is a mechanistic study that follows our previous work where we have showed the ability of O3 to induce cutaneous inflammasome activation in humans exposed to this pollutant. In conclusion, our results suggest that O3 triggers the cutaneous NLRP1 inflammasome activation by ubiquitination and redox mechanism.

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Sigma-Aldrich
抗-β-肌动蛋白−过氧化物酶抗体,小鼠单克隆 小鼠抗, clone AC-15, purified from hybridoma cell culture
Sigma-Aldrich
MG-132,HPLC检测显示纯度≥95%, Potent, reversible, and cell-permeable proteasome inhibitor (Ki = 4 nM).
Sigma-Aldrich
过氧化氢酶-聚乙二醇, lyophilized powder, ~40,000 units/mg protein