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sp. 菌株 CHM43 的 5-酮果糖还原酶属于莽草酸脱氢酶家族中的一个新类别。

The 5-Ketofructose Reductase of sp. Strain CHM43 Is a Novel Class in the Shikimate Dehydrogenase Family.

机构信息

Division of Life Science, Graduate School of Science and Technology for Innovation, Yamaguchi Universitygrid.268397.1, Yamaguchi, Japan.

Department of Biomolecular Science, Graduate School of Science, Toho University, Chiba, Japan.

出版信息

J Bacteriol. 2021 Sep 8;203(19):e0055820. doi: 10.1128/JB.00558-20.

Abstract

sp. strain CHM43 oxidizes mannitol to fructose and then oxidizes fructose to 5-keto-d-fructose (5KF) in the periplasmic space. Since NADPH-dependent 5KF reductase was found in the soluble fraction of spp., 5KF might be transported into the cytoplasm and metabolized. Here, we identified the gene as the gene encoding 5KF reductase (KFR). A mutant strain devoid of the gene showed lower KFR activity and no 5KF consumption. The crystal structure revealed that KFR is similar to NADP-dependent shikimate dehydrogenase (SDH), which catalyzes the reversible NADP-dependent oxidation of shikimate to 3-dehydroshikimate. We found that several amino acid residues in the putative substrate-binding site of KFR were different from those of SDH. Phylogenetic analyses revealed that only a subclass in the SDH family containing KFR conserved such a unique substrate-binding site. We constructed KFR derivatives with amino acid substitutions, including replacement of Asn21 in the substrate-binding site with Ser that is found in SDH. The KFR-N21S derivative showed a strong increase in the value for 5KF but a higher shikimate oxidation activity than wild-type KFR, suggesting that Asn21 is important for 5KF binding. In addition, the conserved catalytic dyad Lys72 and Asp108 were individually substituted for Asn. The K72N and D108N derivatives showed only negligible activities without a dramatic change in the value for 5KF, suggesting a catalytic mechanism similar to that of SDH. With these data taken together, we suggest that KFR is a new member of the SDH family. A limited number of species of acetic acid bacteria, such as sp. strain CHM43, produce 5-ketofructose, a potential low-calorie sweetener, at a high yield. Here, we show that an NADPH-dependent 5-ketofructose reductase (KFR) is involved in 5-ketofructose degradation, and we characterize this enzyme with respect to its structure, phylogeny, and function. The crystal structure of KFR was similar to that of shikimate dehydrogenase, which is functionally crucial in the shikimate pathway in bacteria and plants. Phylogenetic analysis suggested that KFR is positioned in a small subgroup of the shikimate dehydrogenase family. Catalytically important amino acid residues were also conserved, and their relevance was experimentally validated. Thus, we propose KFR as a new member of shikimate dehydrogenase family.

摘要

种 CHM43 氧化甘露醇为果糖,然后在周质空间中将果糖氧化为 5-酮-D-果糖(5KF)。由于 spp. 的可溶性部分中发现了 NADPH 依赖性 5KF 还原酶,因此 5KF 可能被运输到细胞质中并被代谢。在这里,我们鉴定出基因作为编码 5KF 还原酶(KFR)的基因。缺乏基因的突变株显示出较低的 KFR 活性和消耗 5KF。晶体结构表明 KFR 与 NADP 依赖性莽草酸脱氢酶(SDH)相似,后者催化莽草酸的可逆 NADP 依赖性氧化为 3-脱氢莽草酸。我们发现 KFR 假定的底物结合位点中的几个氨基酸残基与 SDH 不同。系统发育分析表明,只有 SDH 家族中的一个亚类包含 KFR,保守了这样一个独特的底物结合位点。我们构建了具有氨基酸取代的 KFR 衍生物,包括将底物结合位点中的天冬酰胺 21 替换为在 SDH 中发现的丝氨酸。KFR-N21S 衍生物对 5KF 的 值有很强的增加,但野生型 KFR 的莽草酸氧化活性更高,表明天冬酰胺 21 对 5KF 结合很重要。此外,保守的催化二联体赖氨酸 72 和天冬氨酸 108 分别被天冬酰胺取代。K72N 和 D108N 衍生物仅表现出可忽略不计的活性,而 5KF 的 值没有明显变化,表明催化机制类似于 SDH。综合这些数据,我们认为 KFR 是 SDH 家族的新成员。少数醋酸菌物种,如种 CHM43,以高产率产生 5-酮果糖,这是一种潜在的低热量甜味剂。在这里,我们表明 NADPH 依赖性 5-酮果糖还原酶(KFR)参与 5-酮果糖的降解,并对其结构、系统发育和功能进行了表征。KFR 的晶体结构与功能上在细菌和植物的莽草酸途径中至关重要的莽草酸脱氢酶相似。系统发育分析表明,KFR 位于莽草酸脱氢酶家族的一个小亚群中。催化重要的氨基酸残基也保守,并通过实验验证了其相关性。因此,我们提议将 KFR 作为莽草酸脱氢酶家族的新成员。

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5-Keto-D-fructose production from sugar alcohol by isolated wild strain CHM 43.由分离的野生菌株 CHM 43 从糖醇生产 5-酮-D-果糖。
Biosci Biotechnol Biochem. 2020 Aug;84(8):1745-1747. doi: 10.1080/09168451.2020.1767500. Epub 2020 May 19.
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