Structure-based design of short peptide ligands binding onto the E. coli processivity ring.
J Med Chem
; 54(13): 4627-37, 2011 Jul 14.
Article
em En
| MEDLINE
| ID: mdl-21619076
The multimeric DNA sliding clamps confer high processivity to replicative DNA polymerases and are also binding platforms for various enzymes involved in DNA metabolism. These enzymes interact with the clamp through a small peptide that binds into a hydrophobic pocket which is a potential target for the development of new antibacterial compounds. Starting from a generic heptapeptide, we used a structure-based strategy to improve the design of new peptide ligands. Chemical modifications at specific residues result in a dramatic increase of the interaction as measured by SPR and ITC. The affinity of our best hits was improved by 2 orders of magnitude as compared to the natural ligand, reaching 10(-8) M range. The molecular basis of the interactions was analyzed by solving the co-crystal structures of the most relevant peptides bound to the clamp and reveals how chemical modifications establish new contacts and contributes to an increased affinity of the ligand.
Texto completo:
1
Coleções:
01-internacional
Base de dados:
MEDLINE
Assunto principal:
Oligopeptídeos
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DNA Polimerase beta
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Proteínas de Escherichia coli
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DNA Polimerase III
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Escherichia coli
Idioma:
En
Ano de publicação:
2011
Tipo de documento:
Article