首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Two additional glutaredoxins exist in Escherichia coli: glutaredoxin 3 is a hydrogen donor for ribonucleotide reductase in a thioredoxin/glutaredoxin 1 double mutant.
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Two additional glutaredoxins exist in Escherichia coli: glutaredoxin 3 is a hydrogen donor for ribonucleotide reductase in a thioredoxin/glutaredoxin 1 double mutant.

机译:大肠杆菌中还存在另外两种戊二醛毒素:戊二醛3是硫氧还蛋白/戊二醛1双突变体中核糖核苷酸还原酶的氢供体。

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摘要

Thioredoxin (Trx) and glutaredoxin (Grx1) are hydrogen donors for ribonucleotide reductase, the key enzyme for deoxyribonucleotide biosynthesis. The viability of a double mutant lacking both Trx and Grx1 implies the presence of a third, unknown hydrogen donor. This paper reports the purification and characterization of two proteins with glutaredoxin activity (using hydroxyethyl disulfide as a substrate) from an Escherichia coli mutant lacking Trx and Grx1 (delta trxA, grx::kan). Affinity chromatography was used to bind glutaredoxin on a glutathione-containing thiol-Sepharose column. The molecular weight of Grx2, 27,000, was atypical for glutaredoxins, whereas Grx3 had a molecular weight of 10,000. Amino acid sequence analysis revealed novel structures with putative active sites typical of glutaredoxins: Cys-Pro-Tyr-Cys. The proteins are therefore referred to as Grx2 and Grx3. The low hydrogen donor activity for ribonucleotide reductase in the crude extract was recovered in the purification of Grx3, whereas Grx2 was inactive. As a hydrogen donor for E. coli ribonucleotide reductase, Grx3 showed approximately the same Km value (0.35 microM) as Grx1, whereas its Vmax value was only 5% that of Grx1. The combination of the Grx3 hydrogen donor activity and a 25-fold induction of ribonucleotide reductase activity in a delta trxA, grx double mutant provides an explanation for its viability and deoxyribonucleotide biosynthesis. The physiological functions of Grx2 and Grx3 remain to be determined.
机译:硫氧还蛋白(Trx)和戊二醛(Grx1)是核糖核苷酸还原酶(脱氧核糖核苷酸生物合成的关键酶)的氢供体。缺少Trx和Grx1的双突变体的生存能力暗示存在第三种未知的氢供体。本文报道了从缺乏Trx和Grx1(δtrxA,grx :: kan)的大肠杆菌突变体中纯化出的两种具有戊二醛活性的蛋白(使用羟乙基二硫化物作为底物)并进行了表征。使用亲和色谱法在含谷胱甘肽的硫醇-Sepharose柱上结合戊二醛。谷胱甘肽毒素的Grx2的分子量为27,000,是非典型的,而Grx3的分子量为10,000。氨基酸序列分析揭示了新颖的结构,其具有典型的戊二醛毒素活性位点:Cys-Pro-Tyr-Cys。因此,这些蛋白质称为Grx2和Grx3。在纯化Grx3时,回收了粗提物中核糖核苷酸还原酶的低氢供体活性,而Grx2没有活性。作为大肠杆菌核糖核苷酸还原酶的氢供体,Grx3显示出与Grx1大致相同的Km值(0.35 microM),而其Vmax值仅为Grx1的5%。 Grx3氢供体活性和delt trxA grx双突变体中核糖核苷酸还原酶活性的25倍诱导的结合提供了其生存力和脱氧核糖核苷酸生物合成的解释。 Grx2和Grx3的生理功能仍有待确定。

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