Identification of a topoisomerase IV in actinobacteria: purification and characterization of ParY super(R) and GyrB super(R) from the coumermycin A sub(1) producer Streptomyces rishiriensis DSM 40489

The biosynthetic gene clusters of the gyrase inhibitors coumermycin A sub(1) and clorobiocin contain two different resistance genes (gyrB super(R) and parY super(R)). Both genes code for B subunits of type II topoisomerases. The authors have now overexpressed and purified the encoded proteins, as we...

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Published inMicrobiology (Society for General Microbiology) Vol. 150; no. 3; pp. 641 - 647
Main Authors Schmutz, E, Hennig, S, Li, Shu-Ming, Heide, L
Format Journal Article
LanguageEnglish
Published 01.03.2004
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Summary:The biosynthetic gene clusters of the gyrase inhibitors coumermycin A sub(1) and clorobiocin contain two different resistance genes (gyrB super(R) and parY super(R)). Both genes code for B subunits of type II topoisomerases. The authors have now overexpressed and purified the encoded proteins, as well as the corresponding A subunits GyrA and ParX. Expression was carried out in Streptomyces lividans in the form of hexahistidine fusion proteins, allowing purification by nickel affinity chromatography. The complex of GyrA and GyrB super(R) was found to catalyse ATP-dependent supercoiling of DNA, i.e. to function as a gyrase, whereas the complex of ParX and ParY super(R) catalysed ATP-dependent decatenation and relaxation, i.e. the functions of topoisomerase IV (topo IV). This is believed to represent the first topo IV identified in the class of actinobacteria, and the first demonstration of the formation of a topo IV as a resistance mechanism of an antibiotic producer.
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ISSN:1350-0872
1465-2080
DOI:10.1099/mic.0.26867-0