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The histone deacetylase inhibitor SAHA induces HSP60 nitration and its extracellular release by exosomal vesicles in human lung-derived carcinoma cells

机译:组蛋白脱乙酰基酶抑制剂SAHA诱导人肺源性癌细胞中HSP60的硝化及其通过胞外小泡的胞外释放

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摘要

HSP60 undergoes changes in quantity and distribution in some types of tumors suggesting a participation of the chaperonin in the mechanism of transformation and cancer progression. Suberoylanilide hydroxamic acid (SAHA), a member of a family of histone deacetylase inhibitors (HDACi), has anti-cancer potential but its interaction, if any, with HSP60 has not been elucidated. We investigated the effects of SAHA in a human lung-derived carcinoma cell line (H292). We analysed cell viability and cycle; oxidative stress markers; mitochondrial integrity; HSP60 protein and mRNA levels; and HSP60 post-translational modifications, and its secretion. We found that SAHA is cytotoxic for H292 cells, interrupting the cycle at the G2/M phase, which is followed by death; cytotoxicity is associated with oxidative stress, mitochondrial damage, and diminution of intracellular levels of HSP60; HSP60 undergoes a post-translational modification and becomes nitrated; and nitrated HSP60 is exported via exosomes. We propose that SAHA causes ROS overproduction and mitochondrial dysfunction, which leads to HSP60 nitration and release into the intercellular space and circulation to interact with the immune system. These successive steps might constitute the mechanism of the anti-tumor action of SAHA and provide a basis to design supplementary therapeutic strategies targeting HSP60, which would be more efficacious than the compound alone.
机译:HSP60在某些类型的肿瘤中发生数量和分布变化,提示伴侣蛋白参与了转化和癌症进展的机制。组蛋白脱乙酰基酶抑制剂(HDACi)家族成员的Suberoylanilide异羟肟酸(SAHA)具有抗癌潜力,但尚未阐明其与HSP60的相互作用。我们调查了SAHA在人肺源性癌细胞系(H292)中的作用。我们分析了细胞活力和周期;氧化应激标志物;线粒体完整性HSP60蛋白和mRNA水平;和HSP60的翻译后修饰及其分泌。我们发现SAHA对H292细胞具有细胞毒性,中断了G2 / M期的循环,随后死亡。细胞毒性与氧化应激,线粒体损伤和细胞内HSP60水平降低有关。 HSP60经过翻译后修饰并被硝化;硝化的HSP60通过外泌体输出。我们认为SAHA会引起ROS过度产生和线粒体功能障碍,从而导致HSP60硝化并释放到细胞间空间和循环中,从而与免疫系统相互作用。这些连续的步骤可能构成SAHA抗肿瘤作用的机制,并为设计针对HSP60的补充治疗策略提供基础,该策略将比单独使用化合物更有效。

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