Quinn G B, Trimboli A J, Barber M J
Department of Biochemistry and Molecular Biology, University of South Florida, College of Medicine, Tampa 33612.
J Biol Chem. 1994 May 6;269(18):13375-81.
A gene has been constructed coding for a chimeric flavocytochrome b5 protein that comprises the soluble domain of rat hepatic cytochrome b5 as the NH2-terminal portion of the chimera and the flavin-containing domain of spinach assimilatory NADH:nitrate reductase as the C terminus. The chimeric protein has been expressed in Escherichia coli and purified to homogeneity using a combination of ammonium sulfate precipitation, affinity chromatography on 5'-ADP-agarose, anion-exchange chromatography, and fast protein liquid chromatography gel filtration with an estimated molecular mass of 43 kDa from polyacrylamide gel electrophoresis. Visible and fluorescence spectroscopy indicated the purified protein contained both a b-type cytochrome and FAD prosthetic groups. The chimeric hemoflavoprotein immunologically cross-reacted with both anti-rat cytochrome b5 and anti-spinach nitrate reductase polyclonal antibodies, indicating the conservation of antigenic determinants from both native domains. NH2-terminal and internal amino acid sequencing of the native and CNBr-digested protein confirmed the presence of peptides derived from both the heme- and flavin-binding portions of the sequence which were identical to the deduced amino acid sequence. The chimera exhibited both NADH: ferricyanide reductase and NADH:cytochrome c reductase activities with Vmax values of 88 and 37 mumol of NADH consumed per min/nmol of heme (mu = 0.05 and pH 7.0) and Km values of 2.1, 32, and 1.4 microM for NADH, ferricyanide, and cytochrome c, respectively. This work represents the first successful bacterial expression of a mammalian-plant chimeric metalloflavoprotein. The chimera exhibited properties extremely similar to those of the native cytochrome b5 heme and spinach nitrate reductase FAD components.
已构建一种基因,其编码嵌合黄素细胞色素b5蛋白,该嵌合蛋白包含大鼠肝细胞色素b5的可溶性结构域作为嵌合体的NH2末端部分,以及菠菜同化型NADH:硝酸还原酶的含黄素结构域作为C末端。该嵌合蛋白已在大肠杆菌中表达,并通过硫酸铵沉淀、5'-ADP-琼脂糖亲和层析、阴离子交换层析和快速蛋白质液相色谱凝胶过滤相结合的方法纯化至同质,聚丙烯酰胺凝胶电泳估计其分子量为43 kDa。可见光谱和荧光光谱表明纯化后的蛋白同时含有b型细胞色素和FAD辅基。该嵌合血红素黄素蛋白与抗大鼠细胞色素b5和抗菠菜硝酸还原酶多克隆抗体均发生免疫交叉反应,表明来自两个天然结构域的抗原决定簇具有保守性。对天然蛋白和经溴化氰消化的蛋白进行NH2末端和内部氨基酸测序,证实存在来自序列中血红素结合部分和黄素结合部分的肽段,这些肽段与推导的氨基酸序列相同。该嵌合体表现出NADH:铁氰化物还原酶和NADH:细胞色素c还原酶活性,Vmax值分别为每分钟每纳摩尔血红素消耗88和37 μmol NADH(μ = 0.05,pH 7.0),NADH、铁氰化物和细胞色素c的Km值分别为2.1、32和1.4 μM。这项工作代表了首次成功在细菌中表达哺乳动物-植物嵌合金属黄素蛋白。该嵌合体表现出与天然细胞色素b5血红素和菠菜硝酸还原酶FAD组分极其相似的特性。