Liu J Q, Dairi T, Itoh N, Kataoka M, Shimizu S, Yamada H
Laboratory of Biocatalytic Chemistry, Biotechnology Research Center, Toyama Prefectural University, Kosugi Machi, Toyama 939-0398, Japan.
J Biol Chem. 1998 Jul 3;273(27):16678-85. doi: 10.1074/jbc.273.27.16678.
The gene encoding low specificity D-threonine aldolase, catalyzing the interconversion of D-threonine/D-allo-threonine and glycine plus acetaldehyde, was cloned from the chromosomal DNA of Arthrobacter sp. strain DK-38. The gene contains an open reading frame consisting of 1,140 nucleotides corresponding to 379 amino acid residues. The enzyme was overproduced in recombinant Escherichia coli cells and purified to homogeneity by ammonium sulfate fractionation and three-column chromatography steps. The recombinant aldolase was identified as a pyridoxal enzyme with the capacity of binding 1 mol of pyridoxal 5'-phosphate per mol of subunit, and Lys59 of the enzyme was determined to be the cofactor binding site by chemical modification with NaBH4. In addition, Mn2+ ion was demonstrated to be an activator of the enzyme, although the purified enzyme contained no detectable metal ions. Equilibrium dialysis and atomic absorption studies revealed that the recombinant enzyme could bind 1 mol of Mn2+ ion per mol of subunit. Remarkably, the predicted amino acid sequence of the enzyme showed no significant similarity to those of the currently known pyridoxal 5'-phosphate-dependent enzymes, indicating that low specificity D-threonine aldolase is a new pyridoxal enzyme with a unique primary structure. Taken together, low specificity D-threonine aldolase from Arthrobacter sp. strain DK-38, with a unique primary structure, is a novel metal-activated pyridoxal enzyme.
编码低特异性D-苏氨酸醛缩酶的基因,可催化D-苏氨酸/D-别苏氨酸与甘氨酸加乙醛之间的相互转化,该基因是从节杆菌属菌株DK-38的染色体DNA中克隆得到的。该基因包含一个由1140个核苷酸组成的开放阅读框,对应379个氨基酸残基。该酶在重组大肠杆菌细胞中过量表达,并通过硫酸铵分级分离和三步柱层析步骤纯化至同质。重组醛缩酶被鉴定为一种吡哆醛酶,每摩尔亚基能够结合1摩尔吡哆醛5'-磷酸,通过用NaBH4进行化学修饰确定该酶的Lys59为辅因子结合位点。此外,尽管纯化的酶中未检测到金属离子,但Mn2+离子被证明是该酶的激活剂。平衡透析和原子吸收研究表明,重组酶每摩尔亚基能够结合1摩尔Mn2+离子。值得注意的是,该酶的预测氨基酸序列与目前已知的吡哆醛5'-磷酸依赖性酶的序列没有显著相似性,表明低特异性D-苏氨酸醛缩酶是一种具有独特一级结构的新型吡哆醛酶。综上所述,来自节杆菌属菌株DK-38的低特异性D-苏氨酸醛缩酶具有独特的一级结构,是一种新型的金属激活吡哆醛酶。