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Targeting Human Lung Adenocarcinoma with a Suppressor of Mitochondrial Superoxide Production

机译:用线粒体超氧化物产生的抑制器靶向人肺腺癌

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Aims:REDOX signaling from reactive oxygen species (ROS) generated by the mitochondria (mitochondrial reactive oxygen species [mtROS]) has been implicated in cancer growth and survival. Here, we investigated the effect of 5-(4-methoxyphenyl)-3H-1,2-dithiole-3-thione (AOL), a recently characterized member of the new class of mtROS suppressors (S1QELs), on human lung adenocarcinoma proteome reprogramming, bioenergetics, and growth. Results:AOL reduced steady-state cellular ROS levels in human lung cancer cells without altering the catalytic activity of complex I. AOL treatment induced dose-dependent inhibition of lung cancer cell proliferation and triggered a reduction in tumor growthin vivo. Molecular investigations demonstrated that AOL reprogrammed the proteome of human lung cancer cells. In particular, AOL suppressed the determinants of the Warburg effect and increased the expression of the complex I subunit NDUFV1 which was also identified as AOL binding site using molecular modeling computer simulations. Comparison of the molecular changes induced by AOL and MitoTEMPO, an mtROS scavenger that is not an S1QEL, identified a core component of 217 proteins commonly altered by the two treatments, as well as drug-specific targets. Innovation:This study provides proof-of-concept data on the anticancer effect of AOL on mouse orthotopic human lung tumors. A unique dataset on proteomic reprogramming by AOL and MitoTEMPO is also provided. Lastly, our study revealed the repression of NDUFV1 by S1QEL AOL. Conclusion:Our findings demonstrate the preclinical anticancer properties of S1QEL AOL and delineate its mode of action on REDOX and cancer signaling.
机译:目的:由线粒体产生的反应性氧(ROS)(线粒体反应性氧物质[MTROS])产生的氧化还原信号与癌症生长和存活率有关。在这里,我们研究了5-(4-甲氧基苯基)-3H-1,2-二孔-3-螺旋(AOL)的作用,最近表征了新类MTROS抑制剂(S1QELS)的成员,对人肺腺癌蛋白质组重新编程,生物能器和增长。结果:AOL降低人肺癌细胞中稳态细胞ROS水平,不改变复合物I. AOL治疗诱导剂量依赖性抑制肺癌细胞增殖的抑制,引发了肿瘤生长体内的减少。分子调查证明AOL重新编程人肺癌细胞的蛋白质组。特别地,AOL抑制了Warburg效应的决定因素,并增加了使用分子建模计算机模拟的AOL结合位点的复合I子单元NDUFV1的表达。 AOL和MITOTEMPO诱导的分子变化的比较,不是S1QEL的MTROS清除剂,鉴定了两种治疗的217个蛋白质的核心组分,以及药物特异性靶标。创新:本研究提供了关于AOL对小鼠原位人肺肿瘤的抗癌效果的概念证明数据。还提供了AOL和Mitotempo的蛋白质组形式重新编程的独特数据集。最后,我们的研究揭示了S1QEL AOL的NDUFv1的镇压。结论:我们的研究结果证明了S1QEL AOL的临床前抗癌特性,并描绘了氧化还原和癌症信号的作用方式。

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