Cheddar G, Meyer T E, Cusanovich M A, Stout C D, Tollin G
Biochemistry. 1986 Oct 21;25(21):6502-7. doi: 10.1021/bi00369a024.
As an extension of previous work from this laboratory using Clostridium pasteurianum flavodoxin [Tollin, G., Cheddar, G., Watkins, J. A., Meyer, T. E., & Cusanovich, M. A. (1984) Biochemistry 23, 6345-6349], we have measured the rate constants as a function of ionic strength for electron transfer from the semiquinones of Clostridium MP, Anacystis nidulans, and Azotobacter vinelandii flavodoxins to the following oxidants: cytochrome c from tuna and horse, Paracoccus denitrificans cytochrome c2, Pseudomonas aeruginosa cytochrome c-551, and ferricyanide. The rate constants extrapolated to infinite ionic strength (k infinity) for the C. MP flavodoxin are all slightly smaller than for the C. pasteurianum flavodoxin, as would be predicted on the basis of the higher redox potential of the C. MP protein. This indicates that there is a close similarity between the surface topographies of the two proteins in the vicinity of the coenzyme binding site. Moreover, the electrostatic interactions between the two flavodoxins and the various oxidants are also approximately the same. These studies justify our previous use of the crystallographic structure of the C. MP flavodoxin to interpret kinetic results obtained with the structurally uncharacterized C. pasteurianum flavodoxin. Despite their lower redox potentials, both Anacystis and Azotobacter flavodoxins are appreciably less reactive toward all of these oxidants (as much as 2 orders of magnitude in some cases) than are the Clostridium flavodoxins.(ABSTRACT TRUNCATED AT 250 WORDS)
作为本实验室先前使用巴氏梭菌黄素氧还蛋白所做工作的拓展 [托林,G.,切达,G.,沃特金斯,J. A.,迈耶,T. E.,& 库萨诺维奇,M. A.(1984年)《生物化学》23卷,6345 - 6349页],我们测定了来自梭菌MP、集胞藻和棕色固氮菌黄素氧还蛋白半醌向以下氧化剂进行电子转移的速率常数与离子强度的函数关系:金枪鱼和马的细胞色素c、反硝化副球菌细胞色素c2、铜绿假单胞菌细胞色素c - 551以及铁氰化物。基于梭菌MP黄素氧还蛋白较高的氧化还原电位预测,其外推至无限离子强度(k∞)时的速率常数均略小于巴氏梭菌黄素氧还蛋白的速率常数。这表明两种蛋白在辅酶结合位点附近的表面拓扑结构非常相似。此外,两种黄素氧还蛋白与各种氧化剂之间的静电相互作用也大致相同。这些研究证明了我们先前利用梭菌MP黄素氧还蛋白的晶体结构来解释用结构未明确的巴氏梭菌黄素氧还蛋白所获得的动力学结果是合理的。尽管集胞藻和棕色固氮菌黄素氧还蛋白的氧化还原电位较低,但它们对所有这些氧化剂的反应性明显低于梭菌黄素氧还蛋白(在某些情况下相差多达2个数量级)。(摘要截取自250词)