Tu C K, Silverman D N
Biochemistry. 1985 Oct 8;24(21):5881-7. doi: 10.1021/bi00342a029.
We have measured the catalysis by Co(II)-substituted bovine carbonic anhydrase II from red cells of the exchange of 18O between CO2 and H2O using membrane-inlet mass spectrometry. We chose Co(II)-substituted carbonic anhydrase II because the apparent equilibrium dissociation constant of HCO3- and enzyme at pH 7.4, KHCO3-eff approximately equal to 55 mM, was within a practicable range of substrate concentrations for the 18O method. For the native, zinc-containing enzyme KHCO3-eff is close to 500 mM at this pH. The rate constant for the release from the active site of water bearing substrate oxygen kH2O was dependent on the fraction of enzyme that was free, not bound by substrate HCO3- or anions. The pH dependence of kH2O in the pH range 6.0-9.0 can be explained entirely by a rate-limiting, intramolecular proton transfer between cobalt-bound hydroxide and a nearby group, probably His-64. The rate constant for this proton transfer was found to be 7 X 10(5) S-1 for the Co(II)-substituted enzyme and 2 X 10(6) S-1 for the native enzyme. These results are applied to models derived from proton-relaxation enhancement of water exchanging from the inner coordination shell of the cobalt in carbonic anhydrase. The anions iodide, cyanate, and thiocyanate inhibited catalysis of 18O exchange by Co(II)-substituted carbonic anhydrase II in a manner competitive with total substrate (CO2 and HCO3-) at chemical equilibrium and pH 7.4. These results are discussed in terms of observed steady-state inhibition patterns and suggest that there is no significant contribution of a ternary complex between substrate, inhibitor, and enzyme.
我们使用膜进样质谱法测量了钴(II)取代的牛红细胞碳酸酐酶II对二氧化碳和水之间18O交换的催化作用。我们选择钴(II)取代的碳酸酐酶II是因为在pH 7.4时,HCO3-与酶的表观平衡解离常数KHCO3-eff约等于55 mM,处于18O方法适用的底物浓度范围内。对于天然含锌酶,在此pH下KHCO3-eff接近500 mM。携带底物氧的水从活性位点释放的速率常数kH2O取决于未被底物HCO3-或阴离子结合的游离酶的比例。在pH 6.0 - 9.0范围内,kH2O对pH的依赖性完全可以用钴结合的氢氧化物与附近基团(可能是His-64)之间的限速分子内质子转移来解释。发现该质子转移的速率常数对于钴(II)取代的酶为7×10⁵ s⁻¹,对于天然酶为2×10⁶ s⁻¹。这些结果应用于从碳酸酐酶中钴的内配位壳层交换的水的质子弛豫增强推导的模型。碘离子、氰酸根离子和硫氰酸根离子在化学平衡和pH 7.4时以与总底物(CO2和HCO3-)竞争的方式抑制钴(II)取代的碳酸酐酶II对18O交换的催化作用。根据观察到的稳态抑制模式对这些结果进行了讨论,表明底物、抑制剂和酶之间的三元复合物没有显著贡献。