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dc.creatorKotsakis, S. D.en
dc.creatorTzouvelekis, L. S.en
dc.creatorPetinaki, E.en
dc.creatorTzelepi, E.en
dc.creatorMiriagou, V.en
dc.date.accessioned2015-11-23T10:35:54Z
dc.date.available2015-11-23T10:35:54Z
dc.date.issued2011
dc.identifier10.1002/prot.23150
dc.identifier.issn0887-3585
dc.identifier.urihttp://hdl.handle.net/11615/29724
dc.description.abstractCMY-30, a naturally occurring class C beta-lactamase differing from the Citrobacter freundii-derived CMY-2 by a Val211Gly substitution in the X-loop, exhibits increased hydrolytic efficiency against ceftazidime and cefotaxime. Kinetic constants of CMY-2 and CMY-30 against the latter substrates suggested that the improved efficiency of the Gly211 variant was due to an increase in k(cat). The structural basis of the increased turn-over rates of oxyimino-cephalosporins caused by Val211Gly was studied using 5 ns molecular dynamics simulations of CMY-2 and CMY-30 in their free forms and in covalent complexes with ceftazidime (acylenzyme) as well as a boronic acid analogue of ceftazidime (deacylation transition state). Analysis of thermal factors indicated that Val211Gly increased the flexibility of the Omega-loop/H7-helix and the Q120-loop formed by amino acids 112-125, and also altered the vibrations of the H10-helix/R2-loop. Structural elements containing the catalytic residues remained relatively rigid except Tyr150 in acyl-enzyme species. Regions exhibiting altered flexibility due to the substitution appear to move in a concerted manner in both enzymes. This movement was more intense in CMY-30 and also at directions different to those observed for CMY-2. Additionally, it appeared that the Val211Gly increased the available space for the accommodation of the R1 side chain of ceftazidime. These findings are likely associated with the significantly increased vibrations of the bound compounds observed in CMY-30 complexes. Therefore, the extended spectrum properties of CMY-30 seem to arise through a complex process implicating changes in protein movement and in the mode of substrate accommodation. Proteins 2011;79:3180-3192. (C) 2011 Wiley-Liss, Inc.en
dc.source.uri<Go to ISI>://WOS:000296705200014
dc.subjectESACen
dc.subjectAmpCen
dc.subjectceftazidimeen
dc.subjectboronic acidsen
dc.subjectenzyme dynamicsen
dc.subjectcovarianceen
dc.subjectanalysisen
dc.subjectC BETA-LACTAMASEen
dc.subjectTRANSITION-STATE ANALOGen
dc.subjectENTEROBACTER-CLOACAE P99en
dc.subjectCITROBACTER-FREUNDIIen
dc.subjectSERRATIA-MARCESCENSen
dc.subjectRESISTANCEen
dc.subjectCATALYSISen
dc.subjectSUBSTRATEen
dc.subjectMECHANISMen
dc.subjectSIMULATIONSen
dc.subjectBiochemistry & Molecular Biologyen
dc.subjectBiophysicsen
dc.titleEffects of the Val211Gly substitution on molecular dynamics of the CMY-2 cephalosporinase: Implications on hydrolysis of expanded-spectrum cephalosporinsen
dc.typejournalArticleen


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