Resurrecting ancestral alcohol dehydrogenases from yeast

乙醛 醇脱氢酶 酵母 生物 乙醇 生物化学 基因复制 丙酮酸脱羧酶 乙醇燃料 基因 遗传学
作者
J. Michael Thomson,Eric A. Gaucher,Michelle F. Burgan,Danny W De Kee,Tang Li,John P. Aris,Steven A. Benner
出处
期刊:Nature Genetics [Springer Nature]
卷期号:37 (6): 630-635 被引量:338
标识
DOI:10.1038/ng1553
摘要

Modern yeast living in fleshy fruits rapidly convert sugars into bulk ethanol through pyruvate. Pyruvate loses carbon dioxide to produce acetaldehyde, which is reduced by alcohol dehydrogenase 1 (Adh1) to ethanol, which accumulates. Yeast later consumes the accumulated ethanol, exploiting Adh2, an Adh1 homolog differing by 24 (of 348) amino acids. As many microorganisms cannot grow in ethanol, accumulated ethanol may help yeast defend resources in the fruit. We report here the resurrection of the last common ancestor of Adh1 and Adh2, called Adh(A). The kinetic behavior of Adh(A) suggests that the ancestor was optimized to make (not consume) ethanol. This is consistent with the hypothesis that before the Adh1-Adh2 duplication, yeast did not accumulate ethanol for later consumption but rather used Adh(A) to recycle NADH generated in the glycolytic pathway. Silent nucleotide dating suggests that the Adh1-Adh2 duplication occurred near the time of duplication of several other proteins involved in the accumulation of ethanol, possibly in the Cretaceous age when fleshy fruits arose. These results help to connect the chemical behavior of these enzymes through systems analysis to a time of global ecosystem change, a small but useful step towards a planetary systems biology.

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