A Lead-Based Fragment Library Screening of the Glycosyltransferase WaaG from Escherichia coli

Glucosyl transferase I (WaaG) in catalyzes the transfer of an α-d-glucosyl group to the inner core of the lipopolysaccharide (LPS) and plays an important role in the biogenesis of the outer membrane. If its activity could be inhibited, the integrity of the outer membrane would be compromised and the...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Pharmaceuticals (Basel, Switzerland) Switzerland), 2022-02, Vol.15 (2), p.209
Hauptverfasser: Riu, Federico, Ruda, Alessandro, Engström, Olof, Muheim, Claudio, Mobarak, Hani, Ståhle, Jonas, Kosma, Paul, Carta, Antonio, Daley, Daniel O, Widmalm, Göran
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Glucosyl transferase I (WaaG) in catalyzes the transfer of an α-d-glucosyl group to the inner core of the lipopolysaccharide (LPS) and plays an important role in the biogenesis of the outer membrane. If its activity could be inhibited, the integrity of the outer membrane would be compromised and the bacterium would be susceptible to antibiotics that are normally prevented from entering the cell. Herein, three libraries of molecules (A, B and C) were docked in the binding pocket of WaaG, utilizing the docking binding affinity as a filter to select fragment-based compounds for further investigations. From the results of the docking procedure, a selection of compounds was investigated by molecular dynamics (MD) simulations to obtain binding free energy (BFE) and values for ligands as an evaluation for the binding to WaaG. Derivatives of 1,3-thiazoles ( and ) from library A and 1,3,4-thiadiazole ( ) from library B displayed a promising profile of BFE, with < mM, viz., 0.11, 0.62 and 0.04 mM, respectively. Further root-mean-square-deviation (RMSD), electrostatic/van der Waals contribution to the binding and H-bond interactions displayed a favorable profile for ligands and . Mannose and/or heptose-containing disaccharides , representing sub-structures of the inner core of the LPS, were also investigated by MD simulations, and compound showed a calculated = 0.4 µM. In the presence of UDP-Glc , the best-docked pose of disaccharide is proximate to the glucose-binding site of WaaG. A study of the variation in angle and distance was performed on the different portions of WaaG (N-, the C- domains and the hinge region). The Spearman correlation coefficient between the two variables was close to unity, where both variables increase in the same way, suggesting a conformational rearrangement of the protein during the MD simulation, revealing molecular motions of the enzyme that may be part of the catalytic cycle. Selected compounds were also analyzed by Saturation Transfer Difference (STD) NMR experiments. STD effects were notable for the 1,3-thiazole derivatives , and with the apo form of the protein as well as in the presence of UDP for .
ISSN:1424-8247
1424-8247
DOI:10.3390/ph15020209