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Evidence of positive selection on D-lactate dehydrogenases in Lactobacillus delbrueckii subsp. bulgaricus

机译:对德氏乳杆菌亚种中的D-乳酸脱氢酶进行阳性选择的证据。保加利亚

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Lactobacillus delbrueckii has been widely used in combination with Streptococcus thermophilus for yogurt fermentation. It has genes encoding both D- and L-type lactate dehydrogenase (LDH) that catalyze the production of L (+) or D (-) stereoisomer of lactic acid, respectively. D-lactic acid is the primary lactate product by L. delbrueckii, yet it cannot be metabolized by human intestine. Since L. delbrueckii has been domesticated for long time, an interesting question arises regarding to whether the selection pressure has affected the evolution of both L-LDH and D-LDH genes in the genome. To answer this question, in this study we first investigated the evolution of these two genes by constructing phylogenetic trees from the orthologous LDH genes of 48 lactate producing species. We found that D-LDH-based phylogenetic tree could better represent the phylogenetic relationship between species including L. delbrueckii in the acidophilus complex than L-LDH-based tree, indicating that it could serve a molecular marker for phylogenetic studies of the acidophilus complex. We next investigated the evolution of both D-LDH and L-LDH genes at amino acid level, and found that D-LDH gene in L. delbrueckii is positively selected, possibly a consequence of long-term domestication. We further identified four amino acids in D-LDH gene that are under positive selection. One of the positively selected residues, V261, is located in the center of three catalytic active sites, and is approximate to the binding sites of D-LDH in three-dimensional structure, indicating likely functional effects on the enzyme activity. The selection from the domestication process thus provides direction for future engineering of D-LDH.
机译:德氏乳杆菌已与嗜热链球菌结合广泛用于酸奶发酵。它具有编码D型和L型乳酸脱氢酶(LDH)的基因,分别催化乳酸的L(+)或D(-)立体异构体的产生。 D-乳酸是德氏乳杆菌的主要乳酸产物,但不能被人的肠道代谢。由于德尔布氏乳杆菌已被长期驯化,因此出现了一个有趣的问题,即选择压力是否已影响基因组中L-LDH和D-LDH基因的进化。为了回答这个问题,在这项研究中,我们首先通过从48个产生乳酸的物种的直系LDH基因构建系统树来研究了这两个基因的进化。我们发现,基于D-LDH的系统树比基于L-LDH的树能更好地表示嗜酸乳杆菌复合体中包括德氏乳杆菌的物种之间的系统发育关系,这表明它可以作为嗜酸菌复合体系统发育研究的分子标记。接下来,我们在氨基酸水平上研究了D-LDH和L-LDH基因的进化,并发现积极选择L. delbrueckii中的D-LDH基因,这可能是长期驯化的结果。我们进一步确定了D-LDH基因中四个正选择的氨基酸。阳性选择的残基之一V261位于三个催化活性位点的中心,在三维结构中近似于D-LDH的结合位点,表明可能对酶活性产生功能作用。因此,从驯化过程中进行选择可以为D-LDH的未来工程设计提供指导。

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