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荚膜红细菌铁氧化还原蛋白I(FdxN)的位点特异性诱变,其在固氮中发挥作用。额外残基的作用。

Site-specific mutagenesis of Rhodobacter capsulatus ferredoxin I, FdxN, that functions in nitrogen fixation. Role of extra residues.

作者信息

Saeki K, Tokuda K i, Fukuyama K, Matsubara H, Nadanami K, Go M, Itoh S

机构信息

Department of Biology, Graduate School of Science, Osaka University, Toyonaka, Osaka 560.

出版信息

J Biol Chem. 1996 Dec 6;271(49):31399-406. doi: 10.1074/jbc.271.49.31399.

Abstract

One of the two [4Fe-4S]-type clusters of the Rhodobacter capsulatus ferredoxin I, FdxN, was modified through site-specific mutagenesis of the distinctive features of the second cluster-binding motif, Cys38-X2-Cys41-X8-Cys50-X3-Cys54-X4-Cys59. First, various mutagenized products were tested to learn whether they could rescue the decreased capacity of an fdxN-null strain MSA1 to fix nitrogen: the phenotype of MSA1 was reassessed to Nifs (slow growth by nitrogen fixation) from our previous description of Nif- (Saeki, K., Suetsugu, Y., Tokuda, K., Miyatake, Y., Young, D. A., Marrs, B. L. and Matsubara, H. (1991) J. Biol. Chem. 266, 12889-12895). Substitution of Cys59 to Ser yielded an almost fully active product, while that of Cys54 did not. Gradual deletions and deletion-substitution of the 8 residues between Cys41 and Cys50 also yielded active products. Second, three of the modified FdxN proteins were subjected to purification. Only the GA protein, whose 8 residues between positions 42 and 49 were replaced by the Gly-Ala sequence, was purified. The GA protein and the authentic FdxN showed similar optical properties. The two clusters in the former had Em values of -490 and -430 mV, while those in the latter had an identical value of -490 mV, when determined by EPR analysis. It was concluded that: 1) Cys59 is not a ligand to [4Fe-4S] clusters but is important for structural integrity, 2) the residues between positions 42 and 49 may form a "loop-out" from a structure analogous to the Peptococcus aerogenes ferredoxin, and 3) the loop-out region does not have functional significance in nitrogen fixation but may be responsible for maintaining the highly negative redox potential of one of the two clusters.

摘要

通过对红假单胞菌铁氧化还原蛋白I(FdxN)的两个[4Fe-4S]型簇之一的第二个簇结合基序(Cys38-X2-Cys41-X8-Cys50-X3-Cys54-X4-Cys59)的独特特征进行定点诱变,对其进行了修饰。首先,对各种诱变产物进行测试,以了解它们是否能够挽救fdxN缺失菌株MSA1固氮能力的下降:MSA1的表型从我们之前描述的Nif-(Saeki, K., Suetsugu, Y., Tokuda, K., Miyatake, Y., Young, D. A., Marrs, B. L. and Matsubara, H. (1991) J. Biol. Chem. 266, 12889-12895)重新评估为Nifs(通过固氮缓慢生长)。将Cys59替换为Ser产生了几乎完全活性的产物,而将Cys54替换则没有。对Cys41和Cys50之间的8个残基进行逐步缺失和缺失-替换也产生了活性产物。其次,对三种修饰的FdxN蛋白进行了纯化。仅纯化了GA蛋白,其42至49位之间的8个残基被Gly-Ala序列取代。GA蛋白和天然FdxN表现出相似的光学性质。通过EPR分析测定时,前者中的两个簇的Em值为-490和-430 mV,而后者中的簇具有相同的-490 mV值。得出以下结论:1)Cys59不是[4Fe-4S]簇的配体,但对结构完整性很重要;2)42至49位之间的残基可能从类似于产气消化球菌铁氧化还原蛋白的结构中形成一个“环出”结构;3)环出区域在固氮中没有功能意义,但可能负责维持两个簇之一的高度负氧化还原电位。

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