d-amino acid aminotransferase ( class='smallCaps'>d-AAT) from'/> Site‐directed mutagenesis of the amino acid residues in β‐strand III [Val30‐Val36] of d‐amino acid aminotransferase of Bacillus sp. YM‐1
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Site‐directed mutagenesis of the amino acid residues in β‐strand III [Val30‐Val36] of d‐amino acid aminotransferase of Bacillus sp. YM‐1

机译:芽孢杆菌d-氨基酸转氨酶β-链III [Val30-Val36]中氨基酸残基的定点诱变。 YM-1

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>The β-strand III formed by amino acid residues Val30-Val36 is located across the active site of the thermostable class="smallCaps">d-amino acid aminotransferase ( class="smallCaps">d-AAT) from thermophilic Bacillus sp. YM-1, and the odd-numbered amino acids (Tyr31, Val33, Lys35) in the strand are revealed to be directed toward the active site. Interestingly, Glu32 is also directed toward the active site. We first investigated the involvement of these amino acid residues in catalysis by alanine scanning mutagenesis. The Y31A and E32A mutant enzymes showed a marked decrease in k cat value, retaining less than 1% of the wild-type enzyme activity. The k cat values of V33A and K35A were changed slightly, but the K m of K35A for α-ketoglutarate was increased to 35.6 mM, compared to the K m value of 2.5 mM for the wild-type enzyme. These results suggested that the positive charge at Lys35 interacted electrostatically with the negative charge at the side chain of α-ketoglutarate. Site-directed mutagenesis of the Glu32 residue was conducted to demonstrate the role of this residue in detail. From the kinetic and spectral characteristics of the Glu32-substituted enzymes, the Glu32 residue seemed to interact with the positive charge at the Schiff base formed between the aldehyde group of pyridoxal 5′-phosphate (PLP) and the ε-amino group of the Lys145 residue.
机译:>由氨基酸残基Val 30 -Val 36 形成的β链III位于热稳定的 class =“ smallCaps”> d嗜热性芽孢杆菌 sp。的-氨基酸氨基转移酶( class =“ smallCaps”> d -AAT)。 YM-1和链中的奇数氨基酸(Tyr 31 ,Val 33 ,Lys 35 )被发现是定向的对活动站点。有趣的是,Glu 32 也指向活动站点。我们首先研究了这些氨基酸残基在通过丙氨酸扫描诱变催化中的参与。 Y31A和E32A突变酶显示 k cat 值显着降低,保留了不到1%的野生型酶活性。 V33A和K35A的 k cat 值略有变化,但对于α-酮戊二酸,K35A的 K m 与野生型酶的 K m 值2.5 mM相比,其增加到35.6 mM。这些结果表明,Lys 35 处的正电荷与α-酮戊二酸侧链的负电荷发生静电相互作用。进行了Glu 32 残基的定点诱变,以详细证明该残基的作用。从Glu 32 取代酶的动力学和光谱特征看,Glu 32 残基似乎与吡ido醛醛基之间形成的席夫碱上的正电荷相互作用。 5'-磷酸(PLP)和Lys 145 残基的ε-氨基。

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