Search
Leader | 00000nz a2200037n 45 0 | ||
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001 | WKP|Q58656981 (VIAF cluster) (Authority/Source Record) | ||
003 | WKP | ||
005 | 20241120235810.0 | ||
008 | 241120nneanz||abbn n and d | ||
035 | ‡a (WKP)Q58656981 | ||
024 | ‡a 0000-0002-8598-3303 ‡2 orcid | ||
035 | ‡a (OCoLC)Q58656981 | ||
100 | 0 | ‡a Seung Seo Lee ‡c researcher ORCID ID = 0000-0002-8598-3303 ‡9 en | |
400 | 0 | ‡a Seung Seo Lee ‡c wetenschapper ‡9 nl | |
670 | ‡a Author's A front-face 'SNi synthase' engineered from a retaining 'double-SN2' hydrolase. | ||
670 | ‡a Author's An ubiquitin-binding molecule can work as an inhibitor of ubiquitin processing enzymes and ubiquitin receptors. | ||
670 | ‡a Author's Biosynthesis of the tunicamycin antibiotics proceeds via unique exo-glycal intermediates | ||
670 | ‡a Author's Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI. | ||
670 | ‡a Author's Detailed dissection of a new mechanism for glycoside cleavage: alpha-1,4-glucan lyase. | ||
670 | ‡a Author's Directed evolution of a glycosynthase from Agrobacterium sp. increases its catalytic activity dramatically and expands its substrate repertoire. | ||
670 | ‡a Author's Enzymatic glycosylation involving fluorinated carbohydrates | ||
670 | ‡a Author's Mechanistic evidence for a front-side, SNi-type reaction in a retaining glycosyltransferase | ||
670 | ‡a Author's Mechanistic insight into enzymatic glycosyl transfer with retention of configuration through analysis of glycomimetic inhibitors | ||
670 | ‡a Author's Palladium-mediated enzyme activation suggests multiphase initiation of glycogenesis | ||
670 | ‡a Author's Structural, mechanistic, and computational analysis of the effects of anomeric fluorines on anomeric fluoride departure in 5-fluoroxylosyl fluorides | ||
670 | ‡a Author's Structures of DPAGT1 Explain Glycosylation Disease Mechanisms and Advance TB Antibiotic Design | ||
670 | ‡a Author's Suppression of the Ubiquitin Pathway by Small Molecule Binding to Ubiquitin Enhances Doxorubicin Sensitivity of the Cancer Cells | ||
670 | ‡a Author's Surface display of sialyltransferase on the outer membrane of Escherichia coli and ClearColi | ||
670 | ‡a Author's Targeting Mannitol Metabolism as an Alternative Antimicrobial Strategy Based on the Structure-Function Study of Mannitol-1-Phosphate Dehydrogenase in Staphylococcus aureus | ||
670 | ‡a Author's Total synthesis of Xanthoangelol B and its various fragments: towards inhibition of virulence factor production of Staphylococcus aureus | ||
670 | ‡a Author's Uptake of unnatural trehalose analogs as a reporter for Mycobacterium tuberculosis | ||
909 | ‡a (orcid) 0000000285983303 ‡9 1 | ||
919 | ‡a frontfacesnisynthaseengineeredfromaretainingdoublesn2hydrolase ‡A A front-face 'SNi synthase' engineered from a retaining 'double-SN2' hydrolase. ‡9 1 | ||
919 | ‡a enzymaticglycosylationinvolvingfluorinatedcarbohydrates ‡A Enzymatic glycosylation involving fluorinated carbohydrates ‡9 1 | ||
919 | ‡a mechanisticevidenceforafrontsidesnitypereactioninaretainingglycosyltransferase ‡A Mechanistic evidence for a front-side, SNi-type reaction in a retaining glycosyltransferase ‡9 1 | ||
919 | ‡a mechanisticinsightintoenzymaticglycosyltransferwithretentionofconfigurationthroughanalysisofglycomimeticinhibitors ‡A Mechanistic insight into enzymatic glycosyl transfer with retention of configuration through analysis of glycomimetic inhibitors ‡9 1 | ||
919 | ‡a palladiummediatedenzymeactivationsuggestsmultiphaseinitiationofglycogenesis ‡A Palladium-mediated enzyme activation suggests multiphase initiation of glycogenesis ‡9 1 | ||
919 | ‡a structuralmechanisticandcomputationalanalysisoftheeffectsofanomericfluorinesonanomericfluoridedeparturein5fluoroxylosylfluorides ‡A Structural, mechanistic, and computational analysis of the effects of anomeric fluorines on anomeric fluoride departure in 5-fluoroxylosyl fluorides ‡9 1 | ||
919 | ‡a structuresofdpagt1explainglycosylationdiseasemechanismsandadvancetbantibioticdesign ‡A Structures of DPAGT1 Explain Glycosylation Disease Mechanisms and Advance TB Antibiotic Design ‡9 1 | ||
919 | ‡a suppressionoftheubiquitinpathwaybysmallmoleculebindingtoubiquitinenhancesdoxorubicinsensitivityofthecancercells ‡A Suppression of the Ubiquitin Pathway by Small Molecule Binding to Ubiquitin Enhances Doxorubicin Sensitivity of the Cancer Cells ‡9 1 | ||
919 | ‡a surfacedisplayofsialyltransferaseontheoutermembraneofescherichiacoliandclearcoli ‡A Surface display of sialyltransferase on the outer membrane of Escherichia coli and ClearColi ‡9 1 | ||
919 | ‡a targetingmannitolmetabolismasanalternativeantimicrobialstrategybasedonthestructurefunctionstudyofmannitol1phosphatedehydrogenaseinstaphylococcusaureus ‡A Targeting Mannitol Metabolism as an Alternative Antimicrobial Strategy Based on the Structure-Function Study of Mannitol-1-Phosphate Dehydrogenase in Staphylococcus aureus ‡9 1 | ||
919 | ‡a totalsynthesisofxanthoangelolbanditsvariousfragmentstowardsinhibitionofvirulencefactorproductionofstaphylococcusaureus ‡A Total synthesis of Xanthoangelol B and its various fragments: towards inhibition of virulence factor production of Staphylococcus aureus ‡9 1 | ||
919 | ‡a uptakeofunnaturaltrehaloseanalogsasareporterformycobacteriumtuberculosis ‡A Uptake of unnatural trehalose analogs as a reporter for Mycobacterium tuberculosis ‡9 1 | ||
919 | ‡a directedevolutionofaglycosynthasefromagrobacteriumspincreasesitscatalyticactivitydramaticallyandexpandsitssubstraterepertoire ‡A Directed evolution of a glycosynthase from Agrobacterium sp. increases its catalytic activity dramatically and expands its substrate repertoire. ‡9 1 | ||
919 | ‡a detaileddissectionofanewmechanismforglycosidecleavagealpha14glucanlyase ‡A Detailed dissection of a new mechanism for glycoside cleavage: alpha-1,4-glucan lyase. ‡9 1 | ||
919 | ‡a covalentassemblyofnanoparticlesasapeptidasedegradableplatformformolecularmri ‡A Covalent assembly of nanoparticles as a peptidase-degradable platform for molecular MRI. ‡9 1 | ||
919 | ‡a biosynthesisofthetunicamycinantibioticsproceedsviauniqueexoglycalintermediates ‡A Biosynthesis of the tunicamycin antibiotics proceeds via unique exo-glycal intermediates ‡9 1 | ||
919 | ‡a ubiquitinbindingmoleculecanworkasaninhibitorofubiquitinprocessingenzymesandubiquitinreceptors ‡A An ubiquitin-binding molecule can work as an inhibitor of ubiquitin processing enzymes and ubiquitin receptors. ‡9 1 | ||
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