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棕色固氮菌FeSII蛋白的诱变研究:组氨酸和赖氨酸残基在保护固氮酶免受氧损伤中的作用。

Mutagenesis studies of the FeSII protein of Azotobacter vinelandii: roles of histidine and lysine residues in the protection of nitrogenase from oxygen damage.

作者信息

Lou J, Moshiri F, Johnson M K, Lafferty M E, Sorkin D L, Miller A, Maier R J

机构信息

Department of Biology, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

Biochemistry. 1999 Apr 27;38(17):5563-71. doi: 10.1021/bi9827823.

Abstract

The Azotobacter FeSII protein, also known as the Shethna protein, forms a protective complex with nitrogenase during periods when nitrogenase is exposed to oxygen. One possible mechanism for its action is an oxidation state-dependent conformational interaction with nitrogenase whereby the FeSII protein dissociates from the MoFe and Fe proteins of nitrogenase under reducing conditions. Herein we report the construction and characterization of five site-directed mutants of the FeSII protein (H12Q, H55Q, K14A, K15A, and the double mutant K14A/K15A) which were individually purified after being individually overexpressed in Escherichia coli. These mutant FeSII proteins maintain native-like assembly and orientation of the 2Fe-2S center on the basis of EPR and NMR spectroscopic characterization and their redox midpoint potentials, which are within 25 mV of that of the wild type protein. The abilities of the individual mutant proteins to protect nitrogenase were assessed by determining the remaining nitrogenase activities after adding each pure version back to extracts from an FeSII deletion strain, and then exposing the mixture to oxygen. In these assays, the H12Q mutant functioned as well as the wild type protein. However, mutation of His55, a few residues away from a cluster-liganding cysteine, results in much less efficient protection of nitrogenase. These results are consistent with pH titrations in both oxidation states, which show that His12 is insensitive to 2Fe-2S cluster oxidation state. His55's pK is weakly responsive to oxidation state, and the pK increase of 0. 16 pH unit upon 2Fe-2S cluster oxidation is indicative of ionization of another group between His55 and the 2Fe-2S cluster, which could modulate the FeSII protein's affinity for nitrogenase in a redox state-dependent manner. Both K14A and K15A mutant FeSII proteins partially lost their ability to protect nitrogenase, but the lysine double mutant lost almost all its protective ability. The nitrogenase component proteins in an Azotobacter strain bearing the double lysine mutation (in the chromosome) were degraded much more rapidly in vivo than those in the wild type strain under carbon substrate-limited conditions. These results indicate that the two lysines may have an important role in FeSII function, perhaps in the initial steps of recognizing the nitrogenase component proteins.

摘要

固氮菌FeSII蛋白,也被称为谢特那蛋白,在固氮酶暴露于氧气的时期与固氮酶形成一种保护复合物。其作用的一种可能机制是与固氮酶发生氧化态依赖性构象相互作用,由此FeSII蛋白在还原条件下从固氮酶的钼铁蛋白和铁蛋白上解离。在此我们报告了FeSII蛋白的五个定点突变体(H12Q、H55Q、K14A、K15A以及双突变体K14A/K15A)的构建与表征,这些突变体在大肠杆菌中分别过表达后进行了单独纯化。基于电子顺磁共振(EPR)和核磁共振(NMR)光谱表征及其氧化还原中点电位,这些突变的FeSII蛋白维持了2Fe-2S中心的天然样组装和取向,其氧化还原中点电位与野生型蛋白相差在25毫伏以内。通过将每个纯的突变体蛋白添加回FeSII缺失菌株的提取物中,然后将混合物暴露于氧气,测定剩余的固氮酶活性,来评估各个突变体蛋白保护固氮酶的能力。在这些测定中,H12Q突变体的功能与野生型蛋白相同。然而,与簇配体半胱氨酸相距几个残基的组氨酸55发生突变,导致对固氮酶的保护效率大大降低。这些结果与两种氧化态下的pH滴定结果一致,pH滴定表明组氨酸12对2Fe-2S簇的氧化态不敏感。组氨酸55的pK对氧化态的响应较弱,2Fe-2S簇氧化时pK增加0.16个pH单位,这表明组氨酸55和2Fe-2S簇之间的另一个基团发生了电离,这可能以氧化还原状态依赖性方式调节FeSII蛋白对固氮酶的亲和力。K14A和K15A突变的FeSII蛋白都部分丧失了保护固氮酶的能力,但赖氨酸双突变体几乎丧失了所有保护能力。在碳底物受限条件下,携带双赖氨酸突变(位于染色体上)的固氮菌菌株中的固氮酶组分蛋白在体内的降解速度比野生型菌株中的快得多。这些结果表明,这两个赖氨酸可能在FeSII功能中起重要作用,也许在识别固氮酶组分蛋白的初始步骤中起作用。

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