Roll J T, Shah V K, Dean D R, Roberts G P
Department of Bacteriology, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53706.
J Biol Chem. 1995 Mar 3;270(9):4432-7. doi: 10.1074/jbc.270.9.4432.
The products of the nifN and nifE genes of Azotobacter vinelandii function as a 200-kDa alpha 2 beta 2 tetramer (NIFNE) in the synthesis of the iron-molybdenum cofactor (FeMo-co) of nitrogenase, the enzyme system required for biological nitrogen fixation. NIFNE was purified using a modification of the published protocol. Immunoblot analysis of anoxic native gels indicated that distinct forms of NIFNE accumulate in strains deficient in either NIFB (delta nifB::kan delta nifDK) or NIFH (delta nifHDK). During the purification of NIFNE from the delta nifHDK mutant, its mobility in these gels changed, becoming similar to that of NIFNE from the delta nifB::kan delta nifDK mutant. While NIFB activity initially co-purified with the NIFNE activity from the delta nifHDK mutant, further purification of NIFNE activity resulted in the loss of the co-purifying NIFB activity; this loss correlated with the change in NIFNE mobility on native gels. These results suggest that the form of NIFNE accumulated in the delta nifHDK mutant is associated with NIFB activity in crude extract but loses this association during NIFNE purification. Addition of the purified metabolic product of NIFB, termed NifB-co, to either NIFNE purified from the delta nifHDK strain or to the NIFNE in crude extract of the delta nifB::kan delta nifDK strain caused a change in the mobility of NIFNE on anoxic native gels to that of the form accumulated in a delta nifHDK mutant. These results support a model where both NifB-co and dinitrogenase reductase participate in FeMo-co synthesis through NIFNE, which serves as a scaffold for this process.
棕色固氮菌(Azotobacter vinelandii)的nifN和nifE基因产物在固氮酶的铁钼辅因子(FeMo-co)合成中作为一种200 kDa的α2β2四聚体(NIFNE)发挥作用,固氮酶是生物固氮所需的酶系统。NIFNE使用已发表方案的改良方法进行纯化。对缺氧天然凝胶的免疫印迹分析表明,在缺乏NIFB(δnifB::kan δnifDK)或NIFH(δnifHDK)的菌株中积累了不同形式的NIFNE。在从δnifHDK突变体中纯化NIFNE的过程中,其在这些凝胶中的迁移率发生了变化,变得与来自δnifB::kan δnifDK突变体的NIFNE相似。虽然NIFB活性最初与来自δnifHDK突变体的NIFNE活性共纯化,但NIFNE活性的进一步纯化导致共纯化的NIFB活性丧失;这种丧失与NIFNE在天然凝胶上迁移率的变化相关。这些结果表明,在δnifHDK突变体中积累的NIFNE形式在粗提取物中与NIFB活性相关,但在NIFNE纯化过程中失去了这种关联。将纯化的NIFB代谢产物(称为NifB-co)添加到从δnifHDK菌株纯化的NIFNE或δnifB::kan δnifDK菌株粗提取物中的NIFNE中,会导致NIFNE在缺氧天然凝胶上的迁移率变为与δnifHDK突变体中积累的形式相同。这些结果支持了一个模型,其中NifB-co和二氮还原酶都通过NIFNE参与FeMo-co的合成,NIFNE为此过程提供了一个支架。