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A ribonucleotide reductase from Clostridium botulinum reveals distinct evolutionary pathways to regulation via the overall activity site

J Biol Chem. 2020; 
Markel Martínez-Carranza, Venkateswara Rao Jonna, Daniel Lundin, Margareta Sahlin, Lars-Anders Carlson, Newal Jemal, Martin Högbom, Britt-Marie Sjöberg, Pål Stenmark, Anders Hofer
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Bacterial Expression … Experimental procedures Protein expression and purification The R2 cDNA construct from C. botulinum Loch Maree/Type A3 strain was synthesized and inserted into pET28TEV vectors by GenScript Inc. (New Brunswick, NJ), codon optimized for expression in E. coli … Get A Quote

摘要

Ribonucleotide reductase (RNR) is a central enzyme for DNA building block synthesis. Most aerobic organisms, including nearly all eukaryotes, have class I RNRs consisting of R1 and R2 subunits.  The catalytic R1 subunit contains an overall activity site that can allosterically turn the enzyme on or off by the binding of ATP or dATP, respectively. The mechanism behind the ability to turn the enzyme off via the R1 subunit involves the formation of different types of R1 oligomers in most studied species and R1-R2 octamers in Escherichia coli. To better understand the distribution of different oligomerization mechanisms, we characterized the enzyme from Clostridium botulinum, which belongs to a subclass of class I... More

关键词

Clostridium botulinum, a-site, allosteric regulation, evolution, inhibition mechanism, oligomerization, overall activity regulation, phylogenetics, ribonucleotide reductase, structure-function