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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Identification of the lysine residue responsible for coenzyme A binding in the heterodimeric 2-oxoacid:ferredoxin oxidoreductase from Sulfolobus tokodaii, a thermoacidophilic archaeon, using 4-fluoro-7-nitrobenzofurazan as an affinity label.
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Identification of the lysine residue responsible for coenzyme A binding in the heterodimeric 2-oxoacid:ferredoxin oxidoreductase from Sulfolobus tokodaii, a thermoacidophilic archaeon, using 4-fluoro-7-nitrobenzofurazan as an affinity label.

机译:使用4-氟-7-硝基苯并呋喃山作为亲和标记物,鉴定来自嗜热古菌Sulfolobus tokodaii的异二聚体2-氧代酸:铁氧还蛋白氧化还原酶中负责辅酶A结合的赖氨酸残基。

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摘要

The heterodimeric 2-oxoacid:ferredoxin oxidoreductase (StOFOR) from Sulfolobus tokodaii, a thermoacidophilic archaeon, was inactivated by low concentrations of 4-fluoro-7-nitrobenzofurazan (NBD-F), with concomitant increase in fluorescence in subunit-b. The inactivation was prevented by CoA, suggesting that NBD-F covalently bound to the Lys which is responsible for CoA binding. The NBD-labeled subunit-b was isolated and digested with endoproteinase Lys-C. The resulting polypeptide mixture was separated by reverse phase HPLC and the fluorescent fraction was isolated. Amino acid sequencing of the fraction revealed that it comprised a mixture of two polypeptides containing Lys125 and Lys173, respectively. Two StOFOR mutants, K125A and K173A, were constructed, expressed and purified. K125A showed a large increase in the K(m) value for CoA and showed poor inactivation by NBD-F, compared with K173A and wild type StOFOR, indicating Lys125 in subunit-b is the critical residue that interacts with CoA.
机译:来自嗜热古细菌Sulfolobus tokodaii的异二聚体2-氧代酸:铁氧还蛋白氧化还原酶(StOFOR)被低浓度的4-氟-7-硝基苯并呋喃山(NBD-F)灭活,同时亚基b中的荧光增加。 CoA可以防止失活,这表明NBD-F与负责CoA结合的Lys共价结合。分离NBD标记的亚基-b并用内蛋白酶Lys-C消化。通过反相HPLC分离得到的多肽混合物,并分离荧光部分。该级分的氨基酸测序表明它包含两种分别含有Lys125和Lys173的多肽的混合物。构建,表达和纯化了两个StOFOR突变体K125A和K173A。与K173A和野生型StOFOR相比,K125A显示CoA的K(m)值大大增加,并且NBD-F的灭活作用很差,这表明亚基b中的Lys125是与CoA相互作用的关键残基。

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