College of Life Science, Hebei Normal University, Shijiazhuang, Hebei, PR China.
College of Life Science, Hebei Normal University, Shijiazhuang, Hebei, PR China; College of Tourism, Hebei Normal University, Shijiazhuang, Hebei, PR China.
Enzyme Microb Technol. 2018 Mar;110:61-68. doi: 10.1016/j.enzmictec.2017.10.001. Epub 2017 Oct 12.
A multiple protein sequence alignment of l-alanine dehydrogenases from different bacterial species revealed that five highly conserved amino acid residues Arg-15, Lys-73, Lys-75, His-96 and Asp-269 are potential catalytic residues of l-alanine dehydrogenase from Bacillus pseudofirmus OF4. In this study, recombinant OF4Ald and its mutants of five conserved residues were constructed, expressed in Escherichia coli, purified by His-tag affinity column and gel filtration chromatography, structure homology modeling, and characterized. The purified protein OF4Ald displayed high specificity to l-alanine (15Umg) with an optimal temperature and pH of 40°C and 10.5, respectively. Enzymatic assay and activity staining in native gels showed that mutations at four conserved residue Arg-15, Lys-75, His-96 and Asp-269 (except residue Lys-73) resulted in a complete loss in enzymatic activity, which signified that these predicted active sites are indispensable for OF4Ald activity. In contrast, the mutant K73A resulted in 6-fold improvement in k/K towards l-alanine as compared to the wild type protein. Further research of the residue Lys-73 substituted by various amino acids and structural modeling revealed that residue Lys-73 might be involved in the catalytic reaction of the enzyme by influencing the enzyme-substrate binding through the hydrogen-bonding interaction with conserved residue Lys-75.
不同细菌来源的 l-丙氨酸脱氢酶的多序列比对表明,Arg-15、Lys-73、Lys-75、His-96 和 Asp-269 这 5 个高度保守的氨基酸残基是芽孢杆菌 OF4 l-丙氨酸脱氢酶的潜在催化残基。本研究构建了重组 OF4Ald 及其 5 个保守残基突变体,在大肠杆菌中表达,通过 His 标签亲和柱和凝胶过滤层析进行纯化,结构同源建模,并进行了表征。纯化的 OF4Ald 蛋白对 l-丙氨酸具有高度特异性(15Umg),最适温度和 pH 分别为 40°C 和 10.5。酶促测定和天然凝胶活性染色显示,四个保守残基 Arg-15、Lys-75、His-96 和 Asp-269(除残基 Lys-73 外)的突变导致完全丧失酶活性,这表明这些预测的活性位点对 OF4Ald 活性是不可或缺的。相比之下,突变体 K73A 使 l-丙氨酸的 k/K 值相对于野生型蛋白提高了 6 倍。对取代各种氨基酸的残基 Lys-73 和结构建模的进一步研究表明,残基 Lys-73 可能通过与保守残基 Lys-75 的氢键相互作用影响酶-底物结合,从而参与酶的催化反应。