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首页> 外文期刊>Journal of Molecular Evolution >On the Early Evolution of Catabolic Pathways: A Comparative Genomics Approach. I. The Cases of Glucose, Ribose, and the Nucleobases Catabolic Routes
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On the Early Evolution of Catabolic Pathways: A Comparative Genomics Approach. I. The Cases of Glucose, Ribose, and the Nucleobases Catabolic Routes

机译:论分解代谢途径的早期演变:一种比较基因组学方法。 I.葡萄糖,核糖和核碱基的病例分解代谢途径

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Compared with the large corpus of published work devoted to the study of the origin and early development of anabolism, little attention has been given to the discussion of the early evolution of catabolism in spite of its significance. In the present study, we have used comparative genomics to explore the evolution and phylogenetic distribution of the enzymes that catalyze the extant catabolic pathways of the monosaccharides glucose and ribose, as well as those of the nucleobases adenine, guanine, cytosine, uracil, and thymine. Based on the oxygen dependence of the enzymes, their conservation, and evolution, we speculate on the relative antiquity of the pathways. Our results allow us to suggest which catabolic pathways and enzymes may have already been present in the last common ancestor. We conclude that the enzymatic degradations of ribose, as well as those of purines adenine and guanine, are among the most ancient catabolic pathways which can be traced by protein-based methodologies.
机译:与致力于研究原产地和早期发展的公布工作的大型语料库相比,虽然其意义,但对分解代谢早期演变的讨论很少。在本研究中,我们已经使用了对比基因组学探索催化单糖葡萄糖和核糖的扩大分解代谢途径的酶的进化和系统发育分布,以及核碱基,鸟嘌呤,胞嘧啶,尿嘧啶和胸腺嘧啶的酶。根据酶的依赖性,保守和进化,我们推测途径的相对古代。我们的结果允许我们建议哪种分解代谢途径和酶可能已经存在于最后一个共同的祖先中。我们得出结论,核糖的酶促降解以及嘌呤腺嘌呤和鸟嘌呤的酶促降解是最古老的分解代谢途径中,可以通过基于蛋白质的方法来追踪的最古代分解代谢途径。

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