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Prediction and Validation of a Druggable Site on Virulence Factor of Drug Resistant Burkholderia cenocepacia*
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4624400
Author(s) Lal, Kanhaya; Bermeo, Rafael; Cramer, Jonathan; Vasile, Francesca; Ernst, Beat; Imberty, Anne; Bernardi, Anna; Varrot, Annabelle; Belvisi, Laura
Author(s) at UniBasel Ernst, Beat
Cramer, Jonathan
Year 2021
Title Prediction and Validation of a Druggable Site on Virulence Factor of Drug Resistant Burkholderia cenocepacia*
Journal Chemistry - A European Journal
Volume 27
Number 40
Pages / Article-Number 10341-10348
Keywords Antimicrobial resistance; BC2L-C; Glycomimetics; Ligand design; Virtual screening
Mesh terms Burkholderia Infections; Burkholderia cenocepacia; Humans; Lectins; Models, Molecular; Pharmaceutical Preparations; Virulence Factors
Abstract Burkholderia cenocepacia is an opportunistic Gram-negative bacterium that causes infections in patients suffering from chronic granulomatous diseases and cystic fibrosis. It displays significant morbidity and mortality due to extreme resistance to almost all clinically useful antibiotics. The bacterial lectin BC2L-C expressed in B. cenocepacia is an interesting drug target involved in bacterial adhesion and subsequent deadly infection to the host. We solved the first high resolution crystal structure of the apo form of the lectin N-terminal domain (BC2L-C-nt) and compared it with the ones complexed with carbohydrate ligands. Virtual screening of a small fragment library identified potential hits predicted to bind in the vicinity of the fucose binding site. A series of biophysical techniques and X-ray crystallographic screening were employed to validate the interaction of the hits with the protein domain. The X-ray structure of BC2L-C-nt complexed with one of the identified active fragments confirmed the ability of the site computationally identified to host drug-like fragments. The fragment affinity could be determined by titration microcalorimetry. These structure-based strategies further provide an opportunity to elaborate the fragments into high affinity anti-adhesive glycomimetics, as therapeutic agents against B. cenocepacia.
Publisher Wiley
ISSN/ISBN 0947-6539 ; 1521-3765
edoc-URL https://edoc.unibas.ch/84303/
Full Text on edoc No
Digital Object Identifier DOI 10.1002/chem.202100252
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/33769626
ISI-Number WOS:000674175400016
Document type (ISI) Journal Article
 
   

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08/05/2024