Structural Insights into the Quinolone Resistance Mechanism of Mycobacterium tuberculosis DNA Gyrase

被引:107
作者
Piton, Jeremie [1 ,2 ]
Petrella, Stephanie [3 ]
Delarue, Marc [1 ,2 ]
Andre-Leroux, Gwenaelle [2 ,4 ]
Jarlier, Vincent [3 ]
Aubry, Alexandra [3 ]
Mayer, Claudine [1 ,2 ,5 ]
机构
[1] Inst Pasteur, Dept Biol Struct & Chim, Unite Dynam Struct Macromol, Paris, France
[2] CNRS, URA 2185, Paris, France
[3] Univ Paris 06, EA1541, Paris, France
[4] Inst Pasteur, Dept Biol Struct & Chim, Unite Biochim Struct, Paris, France
[5] Univ Paris Diderot Paris 7, Paris, France
关键词
BREAKAGE-REUNION DOMAIN; CRYSTAL-STRUCTURE; TOPOISOMERASE-IV; FUNCTIONAL-ANALYSIS; II TOPOISOMERASE; CRYSTALLIZATION; MUTATIONS; SEQUENCE; SUBUNITS; STRAINS;
D O I
10.1371/journal.pone.0012245
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Mycobacterium tuberculosis DNA gyrase, an indispensable nanomachine involved in the regulation of DNA topology, is the only type II topoisomerase present in this organism and is hence the sole target for quinolone action, a crucial drug active against multidrug-resistant tuberculosis. To understand at an atomic level the quinolone resistance mechanism, which emerges in extensively drug resistant tuberculosis, we performed combined functional, biophysical and structural studies of the two individual domains constituting the catalytic DNA gyrase reaction core, namely the Toprim and the breakage-reunion domains. This allowed us to produce a model of the catalytic reaction core in complex with DNA and a quinolone molecule, identifying original mechanistic properties of quinolone binding and clarifying the relationships between amino acid mutations and resistance phenotype of M. tuberculosis DNA gyrase. These results are compatible with our previous studies on quinolone resistance. Interestingly, the structure of the entire breakage-reunion domain revealed a new interaction, in which the Quinolone-Binding Pocket (QBP) is blocked by the N-terminal helix of a symmetry-related molecule. This interaction provides useful starting points for designing peptide based inhibitors that target DNA gyrase to prevent its binding to DNA.
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页数:14
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