Tu C, Chen X, Ren X, LoGrasso P V, Jewell D A, Laipis P J, Silverman D N
Department of Pharmacology and Therapeutics, University of Florida College of Medicine, Gainesville 32610-0267.
J Biol Chem. 1994 Sep 16;269(37):23002-6.
To elucidate the interactions between residues found in the active-site cavity of human carbonic anhydrase III, we have prepared a series of single and double mutants with Lys-64, Arg-67, and Phe-198 replaced with Ala, Asp, Glu, His, and Leu. Rates of catalysis were determined using 18O exchange between CO2 and water measured by mass spectrometry and initial velocity measured by stopped-flow spectrophotometry. Replacement of these residues resulted in increases in kcat/Km for CO2 hydration as much as 200-fold and increases in the pKa of the zinc-bound water by as much as 3.5 units. We conclude that the effect of replacements made at positions 64, 67, and 198 were in general additive for kcat/Km for CO2 hydration, indicating that there is no interaction between these sites that affects the catalytic interconversion of CO2 and HCO3-. One notable exception is the antagonism exhibited by the double mutant of human carbonic anhydrase III containing Glu-64 and Leu-198. The data also show that one source of the large enhancement of kcat/Km for the mutant containing Asp-198 in human carbonic anhydrase III is the presence of both Asp-198 and Lys-64; when Lys-64 was replaced with Ala, a reduction of catalytic activity was observed. These results provide an additional view of the independent interactions of amino acids that affect the catalytic pathway of isozyme III, the least active of the known carbonic anhydrase isozymes.
为阐明人类碳酸酐酶III活性位点腔中发现的残基之间的相互作用,我们制备了一系列单突变体和双突变体,将Lys-64、Arg-67和Phe-198分别替换为Ala、Asp、Glu、His和Leu。使用质谱法测量的CO2与水之间的18O交换以及停流分光光度法测量的初始速度来确定催化速率。这些残基的替换导致CO2水合反应的kcat/Km增加高达200倍,锌结合水的pKa增加高达3.5个单位。我们得出结论,在64、67和198位进行的替换对CO2水合反应的kcat/Km的影响通常是累加的,这表明这些位点之间不存在影响CO2和HCO3-催化相互转化的相互作用。一个显著的例外是含有Glu-64和Leu-198的人类碳酸酐酶III双突变体表现出的拮抗作用。数据还表明,人类碳酸酐酶III中含有Asp-198的突变体的kcat/Km大幅提高的一个原因是Asp-198和Lys-64同时存在;当Lys-64被Ala替换时,观察到催化活性降低。这些结果为影响同工酶III(已知碳酸酐酶同工酶中活性最低的)催化途径的氨基酸独立相互作用提供了另一种视角。