Mizuno Kazunori, Whittaker Mei M, Bächinger Hans Peter, Whittaker James W
Department of Research, Shriners Hospital for Children, Portland, Oregon 97239, USA.
J Biol Chem. 2004 Jun 25;279(26):27339-44. doi: 10.1074/jbc.M400813200. Epub 2004 Apr 13.
Escherichia coli apomanganese superoxide dismutase, prepared by removing the native metal ion under denaturing conditions, exhibits thermally triggered metal uptake behavior previously observed for thermophilic and hyperthermophilic superoxide dismutases but over a lower temperature range. Differential scanning calorimetry of aposuperoxide dismutase and metalated superoxide dismutase unfolding transitions has provided quantitative estimates of the metal binding affinities for manganese superoxide dismutase. The binding constant for Mn(II) (K(Mn(II)) = 3.2 x 10(8) m(-1)) is surprisingly low in light of the essentially irreversible metal binding characteristic of this family of proteins and indicates that metal binding and release processes are dominated by kinetic, rather than thermodynamic, constraints. The kinetic stability of the metalloprotein complex can be traced to stabilization by elements of the protein that are independent of the presence or absence of the metal ion reflected in the thermally triggered metalation characteristic of these proteins. Binding constants for Mn(III), Fe(II), and Fe(III) complexes were estimated using quasireversible values for the unfolding enthalpy and DeltaC(p) for apo-Mn superoxide dismutase and the observed T(m) values for unfolding the metalated species in the absence of denaturants. For manganese and iron complexes, an oxidation state-dependent binding affinity reflects the protein perturbation of the metal redox potential.
通过在变性条件下去除天然金属离子制备的大肠杆菌脱辅基锰超氧化物歧化酶,表现出先前在嗜热和超嗜热超氧化物歧化酶中观察到的热触发金属摄取行为,但温度范围较低。脱辅基超氧化物歧化酶和金属化超氧化物歧化酶展开转变的差示扫描量热法提供了对锰超氧化物歧化酶金属结合亲和力的定量估计。鉴于该蛋白质家族基本不可逆的金属结合特性,Mn(II)的结合常数(K(Mn(II)) = 3.2 x 10(8) m(-1))出奇地低,这表明金属结合和释放过程受动力学而非热力学限制主导。金属蛋白复合物的动力学稳定性可追溯到蛋白质中与这些蛋白质热触发金属化特性中金属离子存在与否无关的元素的稳定作用。使用脱辅基 - Mn超氧化物歧化酶展开焓和DeltaC(p)的准可逆值以及在无变性剂情况下金属化物种展开的观察到的T(m)值,估计了Mn(III)、Fe(II)和Fe(III)配合物的结合常数。对于锰和铁配合物,氧化态依赖性结合亲和力反映了金属氧化还原电位的蛋白质扰动。