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The impact of metabolism on DNA methylation

机译:代谢对DNA甲基化的影响

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Methylation of genomic cytosines is one of the best characterized epigenetic mechanisms, and investigation of its relationship with other biochemical pathways represents a critical stage in the elucidation of biological information processing. The field also has immense potential for the development of medical treatments for any number of conditions ranging from aging to neurological disorders. The DNA methylation status of genes is responsible for many heritable traits and varies more or less independently of the genetic code. This variation is often a result of cellular environmental factors including metabolism. A key metabolite in this regard is homocysteine. Knowledge of homocysteine metabolism continues to be amassed, yet the part played by aberrant DNA methylation in homocysteine-related pathologies is often, at best, conjectural. In this analysis, we will review recent insights and attempt to speculate meaningfully concerning the dynamics of the methionine cycle in relation to DNA methylation and disease.
机译:基因组胞嘧啶的甲基化是最能表征的表观遗传机制之一,对其与其他生化途径之间关系的研究代表了阐明生物信息处理的关键阶段。该领域在开发从衰老到神经系统疾病的各种疾病方面也具有巨大的潜力。基因的DNA甲基化状态与许多遗传性状有关,并且或多或少地独立于遗传密码而变化。这种变化通常是包括代谢在内的细胞环境因素的结果。在这方面,关键的代谢产物是高半胱氨酸。关于同型半胱氨酸代谢的知识仍在继续积累,但是同型半胱氨酸相关病理中异常DNA甲基化所起的作用通常充其量只是推测。在这项分析中,我们将回顾最近的见解,并尝试有意义地推测与DNA甲基化和疾病有关的蛋氨酸循环动力学。

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