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NAD-dependent isocitrate dehydrogenase as a novel target of tributyltin in human embryonic carcinoma cells

机译:NAD依赖性异柠檬酸脱氢酶作为三丁基锡在人类胚胎癌细胞中的新靶标

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摘要

Tributyltin (TBT) is known to cause developmental defects as endocrine disruptive chemicals (EDCs). At nanomoler concentrations, TBT actions were mediated by genomic pathways via PPAR/RXR. However, non-genomic target of TBT has not been elucidated. To investigate non-genomic TBT targets, we performed comprehensive metabolomic analyses using human embryonic carcinoma NT2/D1 cells. We found that 100 nM TBT reduced the amounts of α-ketoglutarate, succinate and malate. We further found that TBT decreased the activity of NAD-dependent isocitrate dehydrogenase (NAD-IDH), which catalyzes the conversion of isocitrate to α-ketoglutarate in the TCA cycle. In addition, TBT inhibited cell growth and enhanced neuronal differentiation through NAD-IDH inhibition. Furthermore, studies using bacterially expressed human NAD-IDH and in silico simulations suggest that TBT inhibits NAD-IDH due to a possible interaction. These results suggest that NAD-IDH is a novel non-genomic target of TBT at nanomolar levels. Thus, a metabolomic approach may provide new insights into the mechanism of EDC action.
机译:已知三丁基锡(TBT)作为内分泌破坏性化学物质(EDC)会引起发育缺陷。在纳摩尔浓度下,TBT的作用是通过PPAR / RXR的基因组途径介导的。但是,尚未阐明TBT的非基因组靶标。为了研究非基因组TBT靶标,我们使用人类胚胎癌NT2 / D1细胞进行了全面的代谢组学分析。我们发现100 nM TBT减少了α-酮戊二酸,琥珀酸和苹果酸的含量。我们进一步发现,TBT降低了NAD依赖性异柠檬酸脱氢酶(NAD-IDH)的活性,该酶在TCA循环中催化了异柠檬酸向α-酮戊二酸的转化。此外,TBT通过抑制NAD-IDH抑制细胞生长并增强神经元分化。此外,使用细菌表达的人NAD-IDH的研究和计算机模拟表明,TBT由于可能的相互作用而抑制NAD-IDH。这些结果表明,NAD-IDH是纳摩尔水平的TBT的新型非基因组靶标。因此,代谢组学方法可以为EDC的作用机理提供新的见解。

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