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dc.creatorKontopidis, G.en
dc.creatorAndrews, M. J.en
dc.creatorMcInnes, C.en
dc.creatorPlater, A.en
dc.creatorInnes, L.en
dc.creatorRenachowski, S.en
dc.creatorCowan, A.en
dc.creatorFischer, P. M.en
dc.date.accessioned2015-11-23T10:35:28Z
dc.date.available2015-11-23T10:35:28Z
dc.date.issued2009
dc.identifier10.1002/cmdc.200900093
dc.identifier.issn18607179
dc.identifier.urihttp://hdl.handle.net/11615/29607
dc.description.abstractThe cyclin-dependent kinase 2-cyclin A complex is an important regulator of the DNA-synthesis phase of the mammalian cell cycle, which is frequently deregulated in cancer. Rather than blocking the ATP-binding site of the apparently redundant kinase subunit, targeting the binding site for macromolecular substrates and regulatory proteins of cyclin A represents a promising strategy to enforce tumour-selective apoptosis. The cyclin-binding groove can be blocked with comparatively small synthetic peptides, which indirectly leads to inhibition of kinase function, but these peptides are metabolically labile and membrane impermeable. As part of our ongoing effort to develop more druglike peptidomimetics derived from cyclin-groove-binding peptides, we report the results of our studies aimed at a detailed understanding of the structural determinants required for effective binding. Using a combination of peptide synthesis, biochemical assays and X-ray crystallography, we show that it is possible to simplify peptide structures through the replacement of dipeptide units in which one of the residues is not directly involved in binding, through the introduction of β-amino acid residues that retain only the dipeptide residue side chain that is important for binding. This approach also allowed us to probe spatial constraints in general, as well as the importance of peptide backbone hydrogen-bonding functions. Our identification of potent β-homoleucine-containing tetrapeptide inhibitors, as well as the finding that an optimised N-terminally acetylated tripeptide retains some cyclin A-binding affinity, suggest that the pharmacological targeting of the cyclin A binding groove may be feasible. © 2009 Wiley-VCH Verlag GmbH & Co. KGaA.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-67749106463&partnerID=40&md5=46b775963aeffd2c0ca490de51a37455
dc.subjectCanceren
dc.subjectCyclin groove inhibitorsen
dc.subjectCyclin-dependent kinasesen
dc.subjectPeptidomimeticsen
dc.subjectStructure-based drug designen
dc.subjectbeta amino aciden
dc.subjectcyclin Aen
dc.subjectcyclin dependent kinase 2en
dc.subjectdipeptideen
dc.subjectenzyme inhibitoren
dc.subjectarticleen
dc.subjectbinding affinityen
dc.subjectbioassayen
dc.subjectchemical analysisen
dc.subjectchemical structureen
dc.subjectcontrolled studyen
dc.subjectcrystal structureen
dc.subjectenzyme inhibitionen
dc.subjecthydrogen bonden
dc.subjectpeptide synthesisen
dc.subjectpriority journalen
dc.subjectprotein analysisen
dc.subjectprotein bindingen
dc.subjectprotein structureen
dc.subjectstructure activity relationen
dc.subjectX ray crystallographyen
dc.subjectAmino Acid Sequenceen
dc.subjectBinding Sitesen
dc.subjectBinding, Competitiveen
dc.subjectComputer Simulationen
dc.subjectCrystallography, X-Rayen
dc.subjectCyclin-Dependent Kinase 2en
dc.subjectDrug Designen
dc.subjectHumansen
dc.subjectPeptidesen
dc.subjectProtein Kinase Inhibitorsen
dc.subjectProtein Structure, Tertiaryen
dc.subjectRecombinant Proteinsen
dc.subjectStructure-Activity Relationshipen
dc.titleTruncation and optimisation of peptide inhibitors of cyclin-dependent kinase 2-cyclin A through structure-guided designen
dc.typejournalArticleen


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