Tollin G, Meyer T E, Cheddar G, Getzoff E D, Cusanovich M A
Biochemistry. 1986 Jun 3;25(11):3363-70. doi: 10.1021/bi00359a041.
Rate constants have been determined for the electron-transfer reactions between reduced free flavins and flavodoxin semiquinone and several blue copper proteins. Correlations between these values and redox potentials demonstrate that spinach plastocyanin, Pseudomonas aeruginosa azurin, Alcaligenes sp. azurin, and Alcaligenes sp. nitrite reductase have the same intrinsic reactivities toward free flavins, whereas stellacyanin is more reactive (3.3 times) and laccase considerably less reactive (approximately 12 times). Electrostatic interactions between the negatively charged flavin mononucleotide (FMN) and the copper proteins show that the interaction site charges for laccase and nitrite reductase are opposite in sign to the net protein charge and that the signs and magnitudes of the charges are consistent with the known three-dimensional structures for plastocyanin and the azurins and with amino acid sequence homologies for stellacyanin. The results demonstrate that the apparent interaction site charge with flavodoxin is larger than that with FMN for plastocyanin, nitrite reductase, and stellacyanin but smaller for Pseudomonas azurin. This is interpreted in terms of a larger interaction domain for the flavodoxin reaction, which allows charged groups more distant from the actual electron-transfer site to become involved. The intrinsic reactivities of plastocyanin and azurin toward flavodoxin are the same, as was the case with FMN, but both stellacyanin and nitrite reductase are considerably less reactive than expected (approximately 2 orders of magnitude). This result suggests the involvement of steric factors with these latter two proteins which discriminate against large reactants such as flavodoxin.
已测定了还原态游离黄素与黄素氧还蛋白半醌以及几种蓝色铜蛋白之间电子转移反应的速率常数。这些值与氧化还原电位之间的相关性表明,菠菜质体蓝素、铜绿假单胞菌天青蛋白、产碱菌属天青蛋白和产碱菌属亚硝酸还原酶对游离黄素具有相同的固有反应活性,而星蓝蛋白的反应活性更高(3.3倍),漆酶的反应活性则低得多(约12倍)。带负电荷的黄素单核苷酸(FMN)与铜蛋白之间的静电相互作用表明,漆酶和亚硝酸还原酶的相互作用位点电荷与蛋白质净电荷的符号相反,且电荷的符号和大小与质体蓝素和天青蛋白已知的三维结构以及星蓝蛋白的氨基酸序列同源性一致。结果表明,对于质体蓝素、亚硝酸还原酶和星蓝蛋白而言,与黄素氧还蛋白的表观相互作用位点电荷大于与FMN的表观相互作用位点电荷,但对于铜绿假单胞菌天青蛋白而言则较小。这可以用黄素氧还蛋白反应具有更大的相互作用域来解释,这使得离实际电子转移位点更远的带电基团能够参与进来。质体蓝素和天青蛋白对黄素氧还蛋白的固有反应活性相同,与FMN的情况一样,但星蓝蛋白和亚硝酸还原酶的反应活性均比预期低得多(约2个数量级)。这一结果表明,后两种蛋白质存在空间因素,对诸如黄素氧还蛋白这样的大分子反应物具有排斥作用。