Division of Bioscience and Bioindustry, Graduate School of Technology, Industrial and Social Sciences, Tokushima University, Tokushima, Japan.
Department of Bioscience and Bioindustry, Faculty of Bioscience and Bioindustry, Tokushima University, Tokushima, Japan.
Biosci Biotechnol Biochem. 2021 Jun 24;85(7):1650-1657. doi: 10.1093/bbb/zbab078.
The amino acid sequence of the OCC_10945 gene product from the hyperthermophilic archaeon Thermococcus litoralis DSM5473, originally annotated as γ-aminobutyrate aminotransferase, is highly similar to that of the uncharacterized pyridoxal 5'-phosphate (PLP)-dependent amino acid racemase from Pyrococcus horikoshii. The OCC_10945 enzyme was successfully overexpressed in Escherichia coli by coexpression with a chaperone protein. The purified enzyme demonstrated PLP-dependent amino acid racemase activity primarily toward Met and Leu. Although PLP contributed to enzyme stability, it only loosely bound to this enzyme. Enzyme activity was strongly inhibited by several metal ions, including Co2+ and Zn2+, and nonsubstrate amino acids such as l-Arg and l-Lys. These results suggest that the underlying PLP-binding and substrate recognition mechanisms in this enzyme are significantly different from those of the other archaeal and bacterial amino acid racemases. This is the first description of a novel PLP-dependent amino acid racemase with moderate substrate specificity in hyperthermophilic archaea.
来自嗜热古菌 Thermococcus litoralis DSM5473 的 OCC_10945 基因产物的氨基酸序列,最初被注释为γ-氨基丁酸转氨酶,与 Pyrococcus horikoshii 中未鉴定的吡哆醛 5'-磷酸 (PLP) 依赖性氨基酸消旋酶高度相似。OCC_10945 酶通过与伴侣蛋白共表达在大肠杆菌中成功过表达。纯化的酶表现出对 Met 和 Leu 的 PLP 依赖性氨基酸消旋酶活性。尽管 PLP 有助于酶的稳定性,但它与该酶的结合并不紧密。几种金属离子,包括 Co2+ 和 Zn2+ 以及非底物氨基酸,如 l-Arg 和 l-Lys,强烈抑制酶活性。这些结果表明,该酶中潜在的 PLP 结合和底物识别机制与其他古菌和细菌的氨基酸消旋酶明显不同。这是首次描述在嗜热古菌中具有中等底物特异性的新型 PLP 依赖性氨基酸消旋酶。