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首页> 外文期刊>Frontiers in Microbiology >A Novel Bifunctional Amino Acid Racemase With Multiple Substrate Specificity, MalY From Lactobacillus sakei LT-13: Genome-Based Identification and Enzymological Characterization
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A Novel Bifunctional Amino Acid Racemase With Multiple Substrate Specificity, MalY From Lactobacillus sakei LT-13: Genome-Based Identification and Enzymological Characterization

机译:一种新型的具有多种底物特异性的双功能氨基酸消旋酶,来自 sacillusbacillus LT-13的MalY:基于基因组的鉴定和酶学表征

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The Lactobacillus sakei strain LK-145 isolated from Moto, a starter of sake, produces potentially large amounts of three D -amino acids, D -Ala, D -Glu, and D -Asp, in a medium containing amylase-digested rice as a carbon source. The comparison of metabolic pathways deduced from the complete genome sequence of strain LK-145 to the type culture strain of Lactobacillus sakei strain LT-13 showed that the L - and D -amino acid metabolic pathways are similar between the two strains. However, a marked difference was observed in the putative cysteine/methionine metabolic pathways of strain LK-145 and LT-13. The cystathionine β-lyase homolog gene malY was annotated only in the genome of strain LT-13. Cystathionine β-lyase is an important enzyme in the cysteine/methionine metabolic pathway that catalyzes the conversion of L -cystathionine into L -homocysteine. In addition to malY , most genome-sequenced strains of L. sakei including LT-13 lacked the homologous genes encoding other putative enzymes in this pathway. Accordingly, the cysteine/methionine metabolic pathway likely does not function well in almost all strains of L. sakei . We succeeded in cloning and expressing the malY gene from strain LT-13 ( Ls-malY ) in the cells of Escherichia coli BL21 (DE3) and characterized the enzymological properties of Ls -MalY. Spectral analysis of purified Ls -MalY showed that Ls -MalY contained a pyridoxal 5′-phosphate (PLP) as a cofactor, and this observation agreed well with the prediction based on its primary structure. Ls -MalY showed amino acid racemase activity and cystathionine β-lyase activity. Ls -MalY showed amino acid racemase activities in various amino acids, such as Ala, Arg, Asn, Glu, Gln, His, Leu, Lys, Met, Ser, Thr, Trp, and Val. Mutational analysis revealed that the ??-amino group of Lys233 in the primary structure of Ls -MalY likely bound to PLP, and Lys233 was an essential residue for Ls -MalY to catalyze both the amino acid racemase and β-lyase reactions. In addition, Tyr123 was a catalytic residue in the amino acid racemase reaction but strongly affected β-lyase activity. These results showed that Ls -MalY is a novel bifunctional amino acid racemase with multiple substrate specificity; both the amino acid racemase and β-lyase reactions of Ls -MalY were catalyzed at the same active site.
机译:从清酒发酵剂Moto分离得到的清酒乳杆菌LK-145菌株,在含有淀粉酶消化的大米作为培养基的培养基中,可能产生大量的三种D-氨基酸,D-Ala,D-Glu和D -Asp。碳源。从菌株LK-145的完整基因组序列推导的代谢途径与日本乳杆菌LT-13型培养菌株的代谢途径比较表明,这两种菌株的L-和D-氨基酸代谢途径相似。然而,在菌株LK-145和LT-13的假定的半胱氨酸/蛋氨酸代谢途径中观察到显着差异。仅在菌株LT-13的基因组中注释了胱硫醚β-裂合酶同源基因malY。胱硫醚β-裂合酶是半胱氨酸/蛋氨酸代谢途径中的重要酶,其催化L-胱硫醚向L-高半胱氨酸的转化。除了malY以外,大多数包括LT-13的清酒乳杆菌的基因组测序菌株在该途径中均缺乏编码其他推定酶的同源基因。因此,半胱氨酸/蛋氨酸的代谢途径可能在几乎所有的日本乳杆菌中都不能很好地起作用。我们成功地从大肠杆菌BL21(DE3)的细胞中克隆并从LT-13菌株(Ls-malY)表达malY基因,并表征了Ls -MalY的酶学性质。纯化的Ls -MalY的光谱分析表明Ls -MalY含有吡ido醛5'-磷酸(PLP)作为辅助因子,该观察结果与基于其一级结构的预测非常吻合。 Ls-MalY显示氨基酸消旋酶活性和胱硫醚β-裂合酶活性。 Ls-MalY在各种氨基酸如Ala,Arg,Asn,Glu,Gln,His,Leu,Lys,Met,Ser,Thr,Trp和Val中显示出氨基酸消旋酶活性。突变分析表明,Ls-MalY一级结构中的Lys233的β-氨基很可能与PLP结合,而Lys233是Ls-MalY催化氨基酸消旋酶和β-裂合酶反应的必需残基。此外,Tyr123是氨基酸消旋酶反应中的催化残基,但强烈影响β-裂解酶的活性。这些结果表明,Ls-MalY是具有多种底物特异性的新型双功能氨基酸消旋酶。 Ls-MalY的氨基酸消旋酶和β-裂合酶反应均在同一活性位点被催化。

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