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The prototypic class la ribonucleotide reductase from Escherichia coli: still surprising after all these years

机译:来自大肠杆菌的原型类La Ribon核苷酸还原酶:这些年后仍然令人惊讶

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RNRs (ribonucleotide reductases) are key players in nucleic acid metabolism, converting ribonucleotides into deoxyribonucleotides. As such, they maintain the intracellular balance of deoxyribonucleotides to ensure the fidelity of DNA replication and repair. The best-studied RNR is the class la enzyme from Escherichia coli, which employs two subunits to catalyse its radical-based reaction: β houses the diferric-tyrosyl radical cofactor, and α2 contains the active site. Recent applications of biophysical methods to the study of this RNR have revealed the importance of oligomeric state to overall enzyme activity and suggest that unprecedented subunit configurations are in play. Although it has been five decaeds since the isolation of nuclectide reductase activity in extracts of E. coli, this prototypical RNR continues to surprise us after all these years.
机译:RNRS(Ribon核苷酸还原酶)是核酸代谢的关键参与者,将核糖核苷酸转化为脱氧核糖核苷酸。因此,它们保持脱氧核糖核苷酸的细胞内平衡,以确保DNA复制和修复的保真度。最佳研究的RNR是来自大肠杆菌的La酶,其中使用两个亚基来催化其基于基于基于基于基于基于的反应:β容纳分子晶型辅因子,α2含有活性位点。最近的生物物理方法对该RNR的研究的应用揭示了低聚状态对整体酶活性的重要性,并表明前所未有的亚基配置在发挥作用。虽然它已经是五种癸二,因为在大肠杆菌提取物中分离含量的含量还原酶活性,但这几年后,这种原型的RNR继续让我们惊喜。

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