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Altered nitrogenase MoFe proteins from Azotobacter vinelandii. Analysis of MoFe proteins having amino acid substitutions for the conserved cysteine residues within the beta-subunit.

作者信息

May H D, Dean D R, Newton W E

机构信息

Department of Biochemistry, Virginia Polytechnic Institute and State University, Blacksburg 24061.

出版信息

Biochem J. 1991 Jul 15;277 ( Pt 2)(Pt 2):457-64. doi: 10.1042/bj2770457.

DOI:10.1042/bj2770457
PMID:1650185
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1151256/
Abstract

The regions surrounding the three strictly conserved cysteine residues (positions 70, 95 and 153) in the beta-subunit of the Azotobacter vinelandii nitrogenase MoFe protein have been proposed to provide P-cluster environments [Dean, Setterquist, Brigle, Scott, Laird & Newton (1990) Mol. Microbiol. 4, 1505-1512]. In the present study, each of these cysteine residues was individually substituted by either serine or alanine by site-directed mutagenesis of the nifK gene, which encodes the MoFe protein beta-subunit. A mutant strain for which the codon for Cys-153 is removed was also isolated. Significant structural or functional roles are indicated for the cysteine residues at positions 70 and 95, where substitution by either serine or alanine eliminates diazotrophic growth of the resulting strains and abolishes or markedly decreases both MoFe-protein acetylene-reduction activity and the intensity of the whole-cell S = 3/2 e.p.r. signal. Changes introduced at position 153 have various effects on the functional properties of the enzyme. The strains produced either by deletion of the Cys-153 residue or its substitution by serine exhibit only a moderate decrease in diazotrophic growth and MoFe-protein activity and no loss of the whole-cell e.p.r.-signal intensity. In contrast, substitution by alanine eliminates diazotrophic growth and very markedly decreases both MoFe-protein activity and e.p.r.-signal intensity. These results are interpreted in terms of a metallocluster-driven protein rearrangement. After purification of the altered MoFe protein, in which serine replaces Cys-153, an investigation of its catalytic and spectroscopic properties confirms that neither the FeMo cofactor, i.e. the substrate-reduction site, nor the component-protein interaction site has been affected. Instead, these data indicate a disruption in electron transfer within the MoFe protein, which is consistent with a role for this residue (and region) at the P clusters.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df81/1151256/a8f14b924b97/biochemj00155-0159-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df81/1151256/a8f14b924b97/biochemj00155-0159-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df81/1151256/a8f14b924b97/biochemj00155-0159-a.jpg

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Altered nitrogenase MoFe proteins from Azotobacter vinelandii. Analysis of MoFe proteins having amino acid substitutions for the conserved cysteine residues within the beta-subunit.
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2
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本文引用的文献

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Site-directed mutagenesis of the nitrogenase MoFe protein of Azotobacter vinelandii.根瘤菌固氮酶 MoFe 蛋白的定点突变。
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Molybdenum-independent nitrogenases of Azotobacter vinelandii: a functional species of alternative nitrogenase-3 isolated from a molybdenum-tolerant strain contains an iron-molybdenum cofactor.维涅兰德固氮菌的非钼铁氮酶:从耐钼菌株中分离出的替代固氮酶-3的一种功能型含有铁钼辅因子。
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Biochem J. 1993 Apr 1;291 ( Pt 1)(Pt 1):309-14. doi: 10.1042/bj2910309.
8
Site-directed mutagenesis of Azotobacter vinelandii ferredoxin I: cysteine ligation of the [4Fe-4S] cluster with protein rearrangement is preferred over serine ligation.棕色固氮菌铁氧化还原蛋白I的定点诱变:与丝氨酸连接相比,[4Fe-4S]簇通过蛋白质重排进行的半胱氨酸连接更为可取。
Proc Natl Acad Sci U S A. 1995 Oct 24;92(22):10064-8. doi: 10.1073/pnas.92.22.10064.
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Biochemistry. 1981 Sep 1;20(18):5132-40. doi: 10.1021/bi00521a006.
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Large-scale purification of high activity Azotobacter vinelandII nitrogenase.维涅兰德固氮菌高活性固氮酶的大规模纯化
Biochim Biophys Acta. 1980 Jul 10;614(1):196-209. doi: 10.1016/0005-2744(80)90180-1.
5
Electron allocation to alternative substrates of Azotobacter nitrogenase is controlled by the electron flux through dinitrogenase.固氮菌固氮酶向替代底物的电子分配受通过双氮酶的电子通量控制。
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Thiol reactivity of the nitrogenase Fe-protein from Azotobacter vinelandii.棕色固氮菌固氮酶铁蛋白的硫醇反应活性
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The mechanism of Klebsiella pneumoniae nitrogenase action. Pre-steady-state kinetics of H2 formation.肺炎克雷伯菌固氮酶作用机制。氢气形成的预稳态动力学。
Biochem J. 1984 Dec 15;224(3):877-86. doi: 10.1042/bj2240877.
8
Nitrogenase from nifV mutants of Klebsiella pneumoniae contains an altered form of the iron-molybdenum cofactor.肺炎克雷伯氏菌nifV突变体的固氮酶含有一种铁钼辅因子的变体形式。
Biochem J. 1984 Jan 1;217(1):317-21. doi: 10.1042/bj2170317.
9
Purification and characterization of the inactive MoFe protein (NifB-Kp1) of the nitrogenase from nifB mutants of Klebsiella pneumoniae.肺炎克雷伯氏菌nifB突变体固氮酶无活性钼铁蛋白(NifB-Kp1)的纯化与表征
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Acetylene reduction by nitrogen-fixing preparations from Clostridium pasteurianum.巴氏梭菌固氮制剂对乙炔的还原作用
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