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dc.creatorRuan, B.en
dc.creatorBovee, M. L.en
dc.creatorSacher, M.en
dc.creatorStathopoulos, C.en
dc.creatorPoralla, K.en
dc.creatorFrancklyn, C. S.en
dc.creatorSöll, D.en
dc.date.accessioned2015-11-23T10:46:40Z
dc.date.available2015-11-23T10:46:40Z
dc.date.issued2005
dc.identifier10.1074/jbc.M411039200
dc.identifier.issn219258
dc.identifier.urihttp://hdl.handle.net/11615/32729
dc.description.abstractBorrelidin, a compound with anti-microbial and anti-angiogenic properties, is a known inhibitor of bacterial and eukaryal threonyl-tRNA synthetase (ThrRS). The inhibition mechanism of borrelidin is not well understood. Archaea contain archaeal and bacterial genre ThrRS enzymes that can be distinguished by their sequence. We explored species-specific borrelidin inhibition of ThrRSs. The activity of ThrRS from Sulfolobus solfataricus and Halobacterium sp. NRC-1 was inhibited by borrelidin, whereas ThrRS enzymes from Methanocaldococcus jannaschii and Archaeoglobus fulgidus were not. In Escherichia coli ThrRS, borrelidin binding induced a conformational change, and threonine was not activated as shown by ATP-PPi exchange and a transient kinetic assay measuring intrinsic tryptophan fluorescence changes. These assays further showed that borrelidin is a noncompetitive tight binding inhibitor of E. coli ThrRS with respect to threonine and ATP. Genetic selection of borrelidin-resistant mutants showed that borrelidin binds to a hydrophobic region (Thr-307, His-309, Cys-334, Pro-335, Leu-489, Leu-493) proximal to the zinc ion at the active site of the E. coli ThrRS. Mutating residue Leu-489 → Trp reduced the space of the hydrophobic cluster and resulted in a 1500-fold increase of the K i value from 4 nM to 6 μM. An alignment of ThrRS sequences showed that this cluster is conserved in most organisms except for some Archaea (e.g. M. jannaschii, A. fulgidus) and some pathogens (e.g. Helicobacter pylori). This study illustrates how one class of natural product inhibitors affects aminoacyl-tRNA synthetase function, providing potentially useful information for structure-based inhibitor design.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-12844272819&partnerID=40&md5=a45717ee9b01599962188a64d7342c88
dc.subjectBacteriaen
dc.subjectBinding energyen
dc.subjectBioassayen
dc.subjectEscherichia colien
dc.subjectFluorescenceen
dc.subjectHydrophobicityen
dc.subjectMicrobiologyen
dc.subjectMutagenesisen
dc.subjectRNAen
dc.subjectBorrelidinen
dc.subjectHydrophobic clustersen
dc.subjectThreonyl-tRNA synthetase (ThrRS)en
dc.subjectEnzyme inhibitionen
dc.subjectadenosine triphosphateen
dc.subjectamino acid transfer RNA ligaseen
dc.subjecthistidineen
dc.subjectleucineen
dc.subjectprolineen
dc.subjectthreonineen
dc.subjectthreonine transfer RNA ligaseen
dc.subjecttryptophanen
dc.subjectzinc ionen
dc.subjectArchaeoglobus fulgidusen
dc.subjectarticleen
dc.subjectcompetitive inhibitionen
dc.subjectcontrolled studyen
dc.subjectdrug bindingen
dc.subjectdrug inhibitionen
dc.subjectdrug mechanismen
dc.subjectgenetic selectionen
dc.subjectHalobacteriumen
dc.subjectHelicobacter pylorien
dc.subjectMethanococcus jannaschiien
dc.subjectnonhumanen
dc.subjectpriority journalen
dc.subjectsequence alignmenten
dc.subjectstructure activity relationen
dc.subjectSulfolobus solfataricusen
dc.subjectAmino Acid Sequenceen
dc.subjectBacterial Proteinsen
dc.subjectBinding Sitesen
dc.subjectFatty Alcoholsen
dc.subjectMolecular Sequence Dataen
dc.subjectProtein Bindingen
dc.subjectProtein Conformationen
dc.subjectSequence Analysisen
dc.subjectSpecies Specificityen
dc.subjectStructure-Activity Relationshipen
dc.subjectSubstrate Specificityen
dc.subjectThreonine-tRNA Ligaseen
dc.subjectArchaeaen
dc.subjectArchaeoglobusen
dc.subjectBacteria (microorganisms)en
dc.subjectEukaryotaen
dc.subjectHalobacterium sp.en
dc.subjectHalobacterium sp. NRC-1en
dc.subjectHelicobacteren
dc.subjectMethanocaldococcusen
dc.subjectMethanocaldococcus jannaschiien
dc.subjectMethanococcusen
dc.subjectNegibacteriaen
dc.subjectSulfolobusen
dc.titleA unique hydrophobic cluster near the active site contributes to differences in borrelidin inhibition, among threonyl-tRNA synthetasesen
dc.typejournalArticleen


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