Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilova Str., 32, Moscow, Russia, 119991.
Acta Naturae. 2013 Jul;5(3):92-8.
The steady-state kinetic parameters of pyridoxal 5'-phosphate-dependent recombinant methionine γ -lyase from three pathogenic bacteria, Clostridium tetani, Clostridium sporogenes, and Porphyromonas gingivalis, were determined in β- and γ-elimination reactions. The enzyme from C. sporogenes is characterized by the highest catalytic efficiency in the γ-elimination reaction of L-methionine. It was demonstrated that the enzyme from these three sources exists as a tetramer. The N-terminal poly-histidine fragment of three recombinant enzymes influences their catalytic activity and facilitates the aggregation of monomers to yield dimeric forms under denaturing conditions. The cytotoxicity of methionine γ-lyase from C. sporogenes and C. tetani in comparison with Citrobacter freundii was evaluated using K562, PC-3, LnCap, MCF7, SKOV-3, and L5178y tumor cell lines. K562 (IC50=0.4-1.3 U/ml), PC-3 (IC50=0.1-0.4 U/ml), and MCF7 (IC50=0.04-3.2 U/ml) turned out to be the most sensitive cell lines.
三种致病菌(破伤风梭菌、产芽孢梭菌和牙龈卟啉单胞菌)来源的吡哆醛 5′-磷酸依赖型蛋氨酸 γ-裂解酶在 β-消除和 γ-消除反应中的稳态动力学参数得以确定。产芽孢梭菌来源的酶在 L-蛋氨酸的 γ-消除反应中表现出最高的催化效率。结果表明,这三种来源的酶均以四聚体形式存在。三种重组酶的 N 端聚组氨酸片段影响其催化活性,并在变性条件下促进单体聚合生成二聚体形式。采用 K562、PC-3、LnCap、MCF7、SKOV-3 和 L5178y 肿瘤细胞系,评估了产芽孢梭菌和破伤风梭菌来源的蛋氨酸 γ-裂解酶与弗氏柠檬酸杆菌的细胞毒性。结果表明,K562(IC50=0.4-1.3 U/ml)、PC-3(IC50=0.1-0.4 U/ml)和 MCF7(IC50=0.04-3.2 U/ml)是最敏感的细胞系。