首页> 美国卫生研究院文献>Frontiers in Molecular Biosciences >Integrated Metabolomics-DNA Methylation Analysis Reveals Significant Long-Term Tissue-Dependent Directional Alterations in Aminoacyl-tRNA Biosynthesis in the Left Ventricle of the Heart and Hippocampus Following Proton Irradiation
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Integrated Metabolomics-DNA Methylation Analysis Reveals Significant Long-Term Tissue-Dependent Directional Alterations in Aminoacyl-tRNA Biosynthesis in the Left Ventricle of the Heart and Hippocampus Following Proton Irradiation

机译:集成的代谢组学-DNA甲基化分析揭示质子辐照后心脏和海马左心室中氨酰基-tRNA生物合成的长期长期依赖组织的方向变化

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摘要

In this study, an untargeted metabolomics approach was used to assess the effects of proton irradiation (1 Gy of 150 MeV) on the metabolome and DNA methylation pattern in the murine hippocampus and left ventricle of the heart 22 weeks following exposure using an integrated metabolomics-DNA methylation analysis. The integrated metabolomics-DNA methylation analysis in both tissues revealed significant alterations in aminoacyl-tRNA biosynthesis, but the direction of change was tissue-dependent. Individual and total amino acid synthesis were downregulated in the left ventricle of proton-irradiated mice but were upregulated in the hippocampus of proton-irradiated mice. Amino acid tRNA synthetase methylation was mostly downregulated in the hippocampus of proton-irradiated mice, whereas no consistent methylation pattern was observed for amino acid tRNA synthetases in the left ventricle of proton-irradiated mice. Thus, proton irradiation causes long-term changes in the left ventricle and hippocampus in part through methylation-based epigenetic modifications. Integrated analysis of metabolomics and DNA methylation is a powerful approach to obtain converging evidence of pathways significantly affected. This in turn might identify biomarkers of the radiation response, help identify therapeutic targets, and assess the efficacy of mitigators directed at those targets to minimize, or even prevent detrimental long-term effects of proton irradiation on the heart and the brain.
机译:在这项研究中,采用整合代谢组学方法,采用非靶向代谢组学方法评估质子辐照(150 MeV的1 Gy)对小鼠海马和心脏左心室代谢组和DNA甲基化模式的影响22周后, DNA甲基化分析。在两个组织中进行的综合代谢组学-DNA甲基化分析显示,氨酰基-tRNA生物合成发生了显着变化,但变化方向取决于组织。质子辐照小鼠的左心室中单个和总氨基酸合成被下调,而质子辐照小鼠的海马中单个氨基酸和总氨基酸合成被上调。质子辐照小鼠的海马中氨基酸tRNA合成酶甲基化大部分被下调,而质子辐照小鼠的左心室中氨基酸tRNA合成没有观察到一致的甲基化模式。因此,质子辐照部分地通过基于甲基化的表观遗传修饰而引起左心室和海马的长期变化。代谢组学和DNA甲基化的综合分析是获得途径的重要证据的强有力证据。反过来,这可能会确定辐射反应的生物标记,帮助确定治疗靶标并评估针对那些靶标的缓解剂的功效,以最大程度地抑制甚至防止质子辐照对心脏和大脑的有害长期影响。

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