School of Chemistry and Molecular Biosciences, The University of Queensland, St. Lucia, Australia.
J Biol Inorg Chem. 2011 Jun;16(5):777-87. doi: 10.1007/s00775-011-0779-6. Epub 2011 Apr 13.
The organophosphate-degrading enzyme from Agrobacterium radiobacter (OpdA) is a highly efficient catalyst for the degradation of pesticides and some nerve agents such as sarin. OpdA requires two metal ions for catalytic activity, and hydrolysis is initiated by a nucleophilic hydroxide that is bound to one of these metal ions. The precise location of this nucleophile has been contentious, with both a terminal and a metal-ion-bridging hydroxide as likely candidates. Here, we employed magnetic circular dichroism to probe the electronic and geometric structures of the Co(II)-reconstituted dinuclear metal center in OpdA. In the resting state the metal ion in the more secluded α site is five-coordinate, whereas the Co(II) in the solvent-exposed β site is predominantly six-coordinate with two terminal water ligands. Addition of the slow substrate diethyl 4-methoxyphenyl phosphate does not affect the α site greatly but lowers the coordination number of the β site to five. A reduction in the exchange coupling constant indicates that substrate binding also triggers a shift of the μ-hydroxide into a pseudoterminal position in the coordination sphere of either the α or the β metal ion. Mechanistic implications of these observations are discussed.
农杆菌(Agrobacterium radiobacter)来源的有机磷降解酶(OpdA)是一种高效的催化剂,可用于降解农药和一些神经毒剂,如沙林。OpdA 的催化活性需要两个金属离子,水解是由结合在其中一个金属离子上的亲核性氢氧根阴离子引发的。这个亲核试剂的确切位置一直存在争议,末端和桥连氢氧根阴离子都有可能。在这里,我们采用磁圆二色性技术来探测 OpdA 中双核金属中心的 Co(II)再构成的电子和几何结构。在静止状态下,位于更隐蔽的α位的金属离子是五配位的,而在溶剂暴露的β位的 Co(II)主要是六配位的,带有两个末端水配体。缓慢底物二乙基 4-甲氧基苯基磷酸酯的加入对α位影响不大,但将β位的配位数降低到五配位。交换耦合常数的降低表明,底物结合也会触发μ-氢氧根阴离子在α或β金属离子的配体球中进入一个拟末端位置。讨论了这些观察结果的机制意义。