采用 52℃下加热 6 min,后经 DEAE- 52、Sephacryls S- 2 0 0和 Q- Sepharose等柱层析方法 ,分离纯化了棕色固氮菌 (Azotobacter vinelandii)缺失 nif Z基因突变种固氮酶 Mo Fe(Δnif Z Mo Fe)蛋白 ,其纯度达到电泳纯。Δnif Z Mo Fe蛋...采用 52℃下加热 6 min,后经 DEAE- 52、Sephacryls S- 2 0 0和 Q- Sepharose等柱层析方法 ,分离纯化了棕色固氮菌 (Azotobacter vinelandii)缺失 nif Z基因突变种固氮酶 Mo Fe(Δnif Z Mo Fe)蛋白 ,其纯度达到电泳纯。Δnif Z Mo Fe蛋白的固氮活性为 2 83nmol C2 H2 还原 / (min·mg蛋白 ) ,远低于野生种 Mo Fe蛋白。Δnif Z Mo Fe蛋白对氧更敏感 ;热稳定性略低于野生种。Δnif Z Mo Fe蛋白的可见光吸收光谱与野生种 Mo Fe蛋白极为相似。其圆二色谱和磁圆二色谱在 450~ 550 nm与野生种 Mo Fe蛋白显著不同 ,表明其 P- cluster及其周围环境与野生种 Mo Fe蛋白有所差异。这亦可能是造成缺失 nif Z突变种 Mo Fe蛋白固氮活性低的原因。展开更多
By incubating the reduced MoFe protein from Azotobacter vinelandii with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its a...By incubating the reduced MoFe protein from Azotobacter vinelandii with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its acetylene reduction activity was remarkably recovered not only by incubation with the reconstituent solution composed of KMnO 4,ferric homocitrate, Na 2S and dithiothreitol,Azotobacter vinelandii with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its acetylene reduction activity was remarkably recovered not only by incubation with the reconstituent solution composed of KMnO 4,ferric homocitrate, Na 2S and dithiothreitol, with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its acetylene reduction activity was remarkably recovered not only by incubation with the reconstituent solution composed of KMnO 4,ferric homocitrate, Na 2S and dithiothreitol, but also with a mixture of 4Fe∶4S clusters and another cluster which had two structure units of 1Mo∶3Fe∶4S bridged by three -OCH 3- at the Mo atoms. Neither the reconstituent solution nor the mixture could reactivate apo MoFe proteins from the mutants deleting nifE and nifH genes and from the mutant UW 45 , which could be reactivated by the FeMoco extracted from the MoFe protein. The results indicated that the FeMoco deficient MoFe proteins from these mutants seemed to be reconstituted only by the clusters which were probably structures only similar to FeMoco. The partially metallocluster deficient MoFe protein could be reconstituted by the clusters with a certain kind of structure and composition; and was changed into different nitrogenase proteins with the ability to fix nitrogen.展开更多
文摘采用 52℃下加热 6 min,后经 DEAE- 52、Sephacryls S- 2 0 0和 Q- Sepharose等柱层析方法 ,分离纯化了棕色固氮菌 (Azotobacter vinelandii)缺失 nif Z基因突变种固氮酶 Mo Fe(Δnif Z Mo Fe)蛋白 ,其纯度达到电泳纯。Δnif Z Mo Fe蛋白的固氮活性为 2 83nmol C2 H2 还原 / (min·mg蛋白 ) ,远低于野生种 Mo Fe蛋白。Δnif Z Mo Fe蛋白对氧更敏感 ;热稳定性略低于野生种。Δnif Z Mo Fe蛋白的可见光吸收光谱与野生种 Mo Fe蛋白极为相似。其圆二色谱和磁圆二色谱在 450~ 550 nm与野生种 Mo Fe蛋白显著不同 ,表明其 P- cluster及其周围环境与野生种 Mo Fe蛋白有所差异。这亦可能是造成缺失 nif Z突变种 Mo Fe蛋白固氮活性低的原因。
文摘By incubating the reduced MoFe protein from Azotobacter vinelandii with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its acetylene reduction activity was remarkably recovered not only by incubation with the reconstituent solution composed of KMnO 4,ferric homocitrate, Na 2S and dithiothreitol,Azotobacter vinelandii with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its acetylene reduction activity was remarkably recovered not only by incubation with the reconstituent solution composed of KMnO 4,ferric homocitrate, Na 2S and dithiothreitol, with O phenanthroline under air and chromatographying the incubated solution on Sephadex G 25 column, inactive MoFe protein could be obtained. Its acetylene reduction activity was remarkably recovered not only by incubation with the reconstituent solution composed of KMnO 4,ferric homocitrate, Na 2S and dithiothreitol, but also with a mixture of 4Fe∶4S clusters and another cluster which had two structure units of 1Mo∶3Fe∶4S bridged by three -OCH 3- at the Mo atoms. Neither the reconstituent solution nor the mixture could reactivate apo MoFe proteins from the mutants deleting nifE and nifH genes and from the mutant UW 45 , which could be reactivated by the FeMoco extracted from the MoFe protein. The results indicated that the FeMoco deficient MoFe proteins from these mutants seemed to be reconstituted only by the clusters which were probably structures only similar to FeMoco. The partially metallocluster deficient MoFe protein could be reconstituted by the clusters with a certain kind of structure and composition; and was changed into different nitrogenase proteins with the ability to fix nitrogen.