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Metabolite damage and its repair or pre-emption (Review)

机译:代谢物损害及其修复或抢占(审查)

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摘要

It is increasingly evident that metabolites suffer various kinds of damage, that such damage happens in all organisms and that cells have dedicated systems for damage repair and containment. First, chemical biology is demonstrating that diverse metabolites are damaged by side reactions of 'promiscuous' enzymes or by spontaneous chemical reactions, that the products are useless or toxic and that the unchecked buildup of these products can be devastating. Second, genetic and genomic evidence from prokaryotes and eukaryotes is implicating a network of new, conserved enzymes that repair damaged metabolites or somehow pre-empt damage. Metabolite (that is, small-molecule) repair is analogous to macromolecule (DNA and protein) repair and seems from comparative genomic evidence to be equally widespread. Comparative genomics also implies that metabolite repair could be the function of many conserved protein families lacking known activities. How-and how well-cells deal with metabolite damage affects fields ranging from medical genetics to metabolic engineering.
机译:越来越明显的是,代谢物遭受各种损害,这种损害发生在所有生物体中,并且细胞具有专用于损害修复和遏制的系统。首先,化学生物学证明“混杂”酶的副反应或自发的化学反应会破坏各种代谢物,产品无用或有毒,这些产品未经检查的堆积可能是毁灭性的。其次,来自原核生物和真核生物的遗传和基因组学证据暗示着一种新的,保守的酶网络,可以修复受损的代谢产物或以某种方式阻止损害。代谢物(即小分子)的修复与大分子(DNA和蛋白质)的修复相似,并且从比较基因组证据看来似乎同样广泛。比较基因组学还暗示,代谢物修复可能是许多缺乏已知活性的保守蛋白家族的功能。细胞如何以及如何处理代谢物损害影响从医学遗传学到代谢工程学等领域。

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