Emerich D W, Burris R H
Proc Natl Acad Sci U S A. 1976 Dec;73(12):4369-73. doi: 10.1073/pnas.73.12.4369.
A unique method is described for inhibiting nitrogenase. When Clostridium pasteurianum nitrogenase is assayed in the presence of the Mo-Fe protein of Azotobacter vinelandii, all the characteristic activities of nitrogenase are inhibited. C. pasteurianum nitrogenase is unaffected by the Fe protein of A. vinelandii. The Fe protein, but not the Mo-Fe protein of C. pasteurianum, inhibits A. vinelandii nitrogenase. Both inhibitions described result from the formation of an inactive complex of A. vinelandii Mo-Fe protein and C. pasteurianum Fe protein. Complex formation requires active components, as oxygen-denatured proteins are ineffective. The results for titration of components of the complex against each other and kinetic data each indicate that the inactive complex consists of two molecules of C. pasteurianum Fe protein per molecule of A. vinelandii Mo-Fe protein. The results of kinetic experiments suggest that the Fe protein from each organism competes for the same site(s) on the A. vinelandii Mo-Fe protein. The Fe protein of C. pasteurianum will form an active or an inactive complex with the Mo-Fe proteins from six different organisms. Inhibition by nitrogenase components that form inactive complexes provides numeroius ways to study the mechanism of nitrogenase action.
本文描述了一种独特的抑制固氮酶的方法。当在棕色固氮菌固氮酶存在的情况下检测棕色固氮菌的固氮酶时,固氮酶的所有特征活性均受到抑制。棕色固氮菌的固氮酶不受棕色固氮菌铁蛋白的影响。棕色固氮菌的铁蛋白而非钼铁蛋白会抑制棕色固氮菌的固氮酶。上述两种抑制作用均源于棕色固氮菌钼铁蛋白与棕色固氮菌铁蛋白形成了无活性复合物。复合物的形成需要活性成分,因为氧变性蛋白是无效的。复合物各成分相互滴定的结果以及动力学数据均表明,无活性复合物由每分子棕色固氮菌钼铁蛋白对应两分子棕色固氮菌铁蛋白组成。动力学实验结果表明,每种生物体的铁蛋白会竞争棕色固氮菌钼铁蛋白上的相同位点。棕色固氮菌的铁蛋白将与六种不同生物体的钼铁蛋白形成活性或无活性复合物。形成无活性复合物的固氮酶成分所导致的抑制作用为研究固氮酶作用机制提供了多种途径。