| Literature DB >> 31581627 |
Leila Mousavifar1,2, Gérard Vergoten3, Guillaume Charron4, René Roy5,6,7.
Abstract
A set of three mannopyranoside possessing identical 1,1'-biphenyl glycosidic pharmacophore but different aglyconic atoms were synthesized using either a palladium-catalyzed Heck cross coupling reaction or a metathesis reaction between their corresponding allylic glycoside derivatives. Their X-ray structures, together with their calculated 3D structures, showed strong indicators to explain the observed relative binding abilities against E. coli FimH as measured by a improved surface plasmon resonance (SPR) method. Amongst the O-, C-, and S-linked analogs, the C-linked analog showed the best ability to become a lead candidate as antagonist against uropathogenic E. coli with a Kd of 11.45 nM.Entities:
Keywords: D-mannosides; E. coli; FimH; Heck reaction; SPR; X-ray; carbohydrate; lectin; metathesis; uropathogenic infections
Mesh:
Substances:
Year: 2019 PMID: 31581627 PMCID: PMC6804135 DOI: 10.3390/molecules24193566
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of the known α-D-mannopyranoside E. coli FimH antagonists.
Scheme 1Synthetic scheme leading to the S-linked mannopyranoside analog 12 using a metathesis reaction.
Figure 2ORTEP diagram for the X-Ray structure of O-linked mannoside 5.
Figure 3ORTEP diagram for the X-Ray structure of C-linked mannoside 6 as it crystallized in self-assembled stacked dimeric forms (6A and 6B) and as obtained (6C) through molecular modelling (see above).
Figure 43D-Structure of the minimum energy level of the 4C1 chair conformation of 12 as calculated by Monte Carlo molecular mechanics followed by DFT determination with the hybrid functional B3LYP, base 6-31G*.
Figure 5Normalized SPR data sets for competitive inhibition of binding of standards (1–3) and compounds 5, 6, and 12 on immobilized 6-aminohexyl α-D-mannopyranoside (4) on the CM5 gold chip.
Relative binding affinities as measured by SPR.
| Compound | Kd (nM) | Relative Potency | ΔG° (kcal mol-1) |
|---|---|---|---|
|
| 475.4 ± 5.7 | 1 | −8.62 |
|
| 4.21 ± 0.72 | 113 | −11.42 |
|
| 2.37 ± 0.50 | 200 | −11.76 |
|
| 38.58 ± 0.11 | 12 | −10. 11 |
|
| 19.90 ± 1.22 | 24 | −10. 50 |
|
| 11.45 ± 0.63 | 42 | −10. 83 |
|
| 94.4± 6.2 | 5 | −9. 58 |