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The composition and distribution of metal clusters in the MoFe protein from a nifZ deletion strain (DJ 194) of Azotobacter vinelandii
作者姓名:ZHOUHuina  ZHANGChunxi  ZHAOYing  BIANShaomin  WANGHuangping  HUANGJufu
作者单位:[1]KeyLaboratoryofPhotosynthesisandEnvironmentalMolecularPhysiology,InstituteofBotany,ChineseAcademyofSciences.Beijing100093,China//BioengineeringCollege,FujianNormalUniversity,Fuzhou350007,China [2]GraduateSchooloftheChineseAcademyofSciences.Beijing,100039 [4]KeyLaboratoryofPhotosynthesisandEnvironmentalMolecularPhysiology,InstituteofBotany,ChineseAcademyofSciences.Beijing100093,China//CollegeofBiologicalSciences,ChinaAgriculturalUniversity,Beijing100094,China [5]KeyLaboratoryofPhotosynthesisandEnvironmentalMolecularPhysiology,InstituteofBotany,ChineseAcademyofSciences.Beijing100093,China
摘    要:Through the anaerobic chromatography on the columns of DEAE 52, Q-Sepharose and Sephacryl S-200, a nitrogenase MoFe protein (△nifZ Av1) was obtained from a nifZ deleted mutant of Azotobacter vinelandii (stain DJ194).The results of Western blotting after anoxic native electrophoresis and SDS-PAGE showed that △nifZ Av1 was similar to wild type MoFe protein (OP Av1) at the electrophoretic mobility, molecular weight and subunit composition. Furthermore, △nifZ Avl was also similar to OP Av1 at the molybdenum content, EPR signal (g≈4.3, 3.65 and 2.01), and the molar extinction coefficient (△ε) of circular dichroism (CD)at 660 nm region. All of these indicated that, besides having the same α2β2 composition as OP Av1, the △nifZ Av1 also contained equal amount of reductive FeMoco in the spin state of S=3/2 to OP Av1. However, the iron content and substrate (C2H2, H^ and N2)-reduction activity of △nifZ Av1 were 74% and 46%-50% of those of OP Av1, respectively. Furthermore, the △ε at around 450 nm, which reflects P-cluster in Av1, was obviously lower than that of OP Av1. It suggested that the difference between △nifZ Avl and OP Av1 resulted from P-cluster rather than FeMoco, and from the half number of P-cluster in △nifZ Av1, but the composition or redoxstate of P-cluster in △nifZ Av1 were not changed. Thus it could propose that △nifZ Av1 is composed of two different αβsubunit pairs. One is a FeMoco-and P-cluster-containing pair, and the other is a P-cluster-deficient but FeMoco-containing pair. Since the deletion of nifZ gene leads to the deficiency of only one of two P-clusters in a α2β2 tetramer, the assembly of P-cluster may not simply depend on one gene product, and so a possible mechanism of NifZ is supposed here.

关 键 词:蛋白质  固氮菌  电泳运动  分子重量
收稿时间:2005-03-22

The composition and distribution of metal clusters in the MoFe protein from a <Emphasis Type="Italic">nifZ</Emphasis> deletion strain (DJ 194) of <Emphasis Type="Italic">Azotobacter vinelandii</Emphasis>
ZHOUHuina ZHANGChunxi ZHAOYing BIANShaomin WANGHuangping HUANGJufu.The composition and distribution of metal clusters in the MoFe protein from a nifZ deletion strain (DJ 194) of Azotobacter vinelandii[J].Chinese Science Bulletin,2005,50(13):1342-1347.
Authors:Huina?Zhou  Chunxi?Zhang  Ying?Zhao  Shaomin?Bian  Fei?Ren  Huangping?Wang  Email author" target="_blank">Jufu?HuangEmail author
Affiliation:(1) Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, 100093 Beijing, China;(2) Graduate School of the Chinese Academy of Sciences, 100039 Beijing;(3) Key Laboratory of Photochemistry, Institute of Chemistry, Chinese Academy of Sciences, 100080 Beijing, China;(4) College of Biological Sciences, China Agricultural University, 100094 Beijing, China;(5) Bioengineering College, Fujian Normal University, 350007 Fuzhou, China
Abstract:Through the anaerobic chromatography on the columns of DEAE 52, Q-Sepharose and Sephacryl S-200, a nitrogenase MoFe protein (ΔnifZ Av1) was obtained from a nifZ deleted mutant of Azotobacter vinelandii (stain DJ194). The results of Western blotting after anoxic native electrophoresis and SDS-PAGE showed that ΔnifZ Av1 was similar to wild type MoFe protein (OP Av1) at the electrophoretic mobility, molecular weight and subunit composition. Furthermore, ΔnifZ Av1 was also similar to OP Av1 at the molybdenum content, EPR signal (g ≈ 4.3, 3.65 and 2.01), and the molar extinction coefficient (Δε) of circular dichroism (CD) at 660 nm region. All of these indicated that, besides having the same α2β2 composition as OP Av1, the ΔnifZ Av1 also contained equal amount of reductive FeMoco in the spin state of S=3/2 to OP Av1. However, the iron content and substrate (C2H2, H+ and N2)-reduction activity of ΔnifZ Av1 were 74% and 46%–50% of those of OP Av1, respectively. Furthermore, the Δε at around 450 nm, which reflects P-cluster in Av1, was obviously lower than that of OP Av1. It suggested that the difference between ΔnifZ Av1 and OP Av1 resulted from P-cluster rather than FeMoco, and from the half number of P-cluster in ΔnifZ Av1, but the composition or redox state of P-cluster in ΔnifZ Av1 were not changed. Thus it could propose that ΔnifZ Av1 is composed of two different αβ subunit pairs. One is a FeMoco- and P-cluster-containing pair, and the other is a P-cluster-deficient but FeMoco-containing pair. Since the deletion of nifZ gene leads to the deficiency of only one of two P-clusters in a α2β2 tetramer, the assembly of P-cluster may not simply depend on one gene product, and so a possible mechanism of NifZ is supposed here.
Keywords:Azotobacter vinelandii  nifZ deletion  iron-molybdenum protein  metal cluster  electronic paramagnetic resonance (EPR)  circular dichrosim (CD)  
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