Takebayashi Shinji, Shinkai Seiji, Ikeda Masato, Takeuchi Masayuki
Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, Fukuoka, 819-0395, Japan.
Org Biomol Chem. 2008 Feb 7;6(3):493-9. doi: 10.1039/b716196d. Epub 2007 Dec 12.
An artificial phosphodiesterase () bearing two types of metal binding sites, a catalytic site and a regulatory bipyridine site showed a unique allosteric transition in the catalytic activity against the metal concentration. The rate constants for the hydrolysis reaction of 2-hydroxypropyl-p-nitrophenyl phosphate (HPNP) and RNA dimer (ApA) with and without an effector metal ion were evaluated; the k(obs) value of HPNP hydrolysis for .(Zn(2+))(3) (2.0 x 10(-4) s(-1)) is 3.3 times larger than that for .(Zn(2+))(2). In the case of and Cu(2+), a 19.4 times larger k(obs) value was obtained for .(Cu(2+))(3) (1.2 x 10(-3) s(-1)) against .(Cu(2+))(2). The increase in the catalytic activity is ascribed to the allosteric conformational transition of induced by the coordination of effector metal ion to the Bpy moiety. A detailed investigation revealed that a conformational change of induced by the third M(2+) complexation enhances the rate of hydrolysis rather than a change in the substrate affinity.
一种带有两种金属结合位点(一个催化位点和一个调节性联吡啶位点)的人工磷酸二酯酶,在针对金属浓度的催化活性方面表现出独特的变构转变。评估了在有和没有效应金属离子的情况下,2-羟丙基对硝基苯基磷酸酯(HPNP)和RNA二聚体(ApA)水解反应的速率常数;对于.(Zn(2+))(3)(2.0×10^(-4) s^(-1)),HPNP水解的k(obs)值比对于.(Zn(2+))(2)的大3.3倍。在和Cu(2+)的情况下,对于.(Cu(2+))(3)(1.2×10^(-3) s^(-1))相对于.(Cu(2+))(2),获得了大19.4倍的k(obs)值。催化活性的增加归因于效应金属离子与Bpy部分配位诱导的变构构象转变。详细研究表明,由第三个M(2+)络合诱导的构象变化增强了水解速率,而不是底物亲和力的变化。