Zheng L, White R H, Cash V L, Jack R F, Dean D R
Department of Anaerobic Microbiology, Virginia Polytechnic Institute and State University, Blacksburg 24061.
Proc Natl Acad Sci U S A. 1993 Apr 1;90(7):2754-8. doi: 10.1073/pnas.90.7.2754.
Biological nitrogen fixation is catalyzed by nitrogenase, a complex metalloenzyme composed of two separately purifiable component proteins encoded by the structural genes nifH, nifD, and nifK. Deletion of the Azotobacter vinelandii nifS gene lowers the activities of both nitrogenase component proteins. Because both nitrogenase component proteins have metallocluster prosthetic groups that are composed of iron- and sulfur-containing cores, this result indicated that the nifS gene product could be involved in the mobilization of the iron or sulfur required for metallocluster formation. In the present work, it is shown that NIFS is a pyridoxal phosphate-containing homodimer that catalyzes the formation of L-alanine and elemental sulfur by using L-cysteine as substrate. NIFS activity is extremely sensitive to thiol-specific alkylating reagents, which indicates the participation of a cysteinyl thiolate at the active site. Based on these results we propose that an enzyme-bound cysteinyl persulfide that requires the release of the sulfur from the substrate L-cysteine for its formation ultimately provides the inorganic sulfide required for nitrogenase metallocluster formation. The recent discovery of nifS-like genes in non-nitrogen-fixing organisms also raises the possibility that the reaction catalyzed by NIFS represents a universal mechanism that involves pyridoxal phosphate chemistry, in the mobilization of the sulfur required for metallocluster formation.
生物固氮由固氮酶催化,固氮酶是一种复杂的金属酶,由结构基因nifH、nifD和nifK编码的两种可分别纯化的组分蛋白组成。删除棕色固氮菌的nifS基因会降低两种固氮酶组分蛋白的活性。由于两种固氮酶组分蛋白都有由含铁和硫的核心组成的金属簇辅基,这一结果表明nifS基因产物可能参与了金属簇形成所需铁或硫的动员。在本研究中,表明NIFS是一种含磷酸吡哆醛的同型二聚体,它以L-半胱氨酸为底物催化L-丙氨酸和元素硫的形成。NIFS活性对硫醇特异性烷基化试剂极为敏感,这表明活性位点有半胱氨酸硫醇盐参与。基于这些结果,我们提出一种与酶结合的半胱氨酸过硫化物,其形成需要从底物L-半胱氨酸中释放硫,最终提供固氮酶金属簇形成所需的无机硫化物。最近在非固氮生物中发现的nifS样基因也增加了一种可能性,即NIFS催化的反应代表了一种涉及磷酸吡哆醛化学的普遍机制,参与金属簇形成所需硫的动员。