Antioxidant modulation of sirtuin 3 during acute inflammatory pain: The ROS control

SIRT3 锡尔图因 氧化应激 活性氧 线粒体ROS 抗氧化剂 化学 超氧化物歧化酶 痛觉过敏 蛋白质羰基化 线粒体 NAD+激酶 药理学 炎症 细胞生物学 生物化学 生物 免疫学 伤害 脂质过氧化 受体
作者
Sara Ilari,Luigino Antonio Giancotti,Filomena Lauro,Concetta Dagostino,Micaela Gliozzi,Valentina Malafoglia,Luigi Sansone,Ernesto Palma,Marco Tafani,Matteo Antonio Russo,Carlo Tomino,Massimo Fini,Daniela Salvemini,Vincenzo Mollace,Carolina Muscoli
出处
期刊:Pharmacological Research [Elsevier]
卷期号:157: 104851-104851 被引量:32
标识
DOI:10.1016/j.phrs.2020.104851
摘要

Oxidative stress induced post-translational protein modifications are associated with the development of inflammatory hypersensitivities. At least 90% of cellular reactive oxygen species (ROS) are produced in the mitochondria, where the mitochondrial antioxidant, manganese superoxide dismutase (MnSOD), is located. MnSOD’s ability to reduce ROS is enhanced by the mitochondrial NAD+-dependent deacetylase sirtuin (SIRT3). SIRT3 can reduce ROS levels by deacetylating MnSOD and enhancing its ability to neutralize ROS or by enhancing the transcription of MnSOD and other oxidative stress-responsive genes. SIRT3 can be post-translationally modified through carbonylation which results in loss of activity. The contribution of post-translational SIRT3 modifications in central sensitization is largely unexplored. Our results reveal that SIRT3 carbonylation contributes to spinal MnSOD inactivation during carrageenan-induced thermal hyperalgesia in rats. Moreover, inhibiting ROS with natural and synthetic antioxidants, prevented SIRT3 carbonylation, restored the enzymatic activity of MnSOD, and blocked the development of thermal hyperalgesia. These results suggest that therapeutic strategies aimed at inhibiting post-translational modifications of SIRT3 may provide beneficial outcomes in pain states where ROS have been documented to play an important role in the development of central sensitization.
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