Improving the accuracy of 1 H- 19 F internuclear distance measurement using 2D 1 H- 19 F HOESY

With the rise in fluorinated pharmaceuticals, it is becoming increasingly important to develop new F NMR-based methods to assist in their analysis. Crucially, obtaining information regarding the conformational dynamics of a molecule in solution can aid the design of strongly binding therapeutics. He...

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Veröffentlicht in:Magnetic resonance in chemistry 2019-12, Vol.57 (12), p.1143-1149
Hauptverfasser: Dewis, Lydia, Crouch, Ron, Russell, Dave, Butts, Craig
Format: Artikel
Sprache:eng
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Zusammenfassung:With the rise in fluorinated pharmaceuticals, it is becoming increasingly important to develop new F NMR-based methods to assist in their analysis. Crucially, obtaining information regarding the conformational dynamics of a molecule in solution can aid the design of strongly binding therapeutics. Herein, we report the development of a 2D H- F Heteronuclear Overhauser Spectroscopy (HOESY) experiment to measure H- F internuclear distances, with accuracies of ~5% when compared with H- F internuclear distances calculated by quantum chemical methods. We demonstrate that correcting for cross-relaxation of H, using the diagonal peaks from the 2D H- H Nuclear Overhauser Enhancement Spectroscopy (NOESY), is critical in obtaining accurate values for H- F internuclear distances. Finally, we show that by using the proposed method to measure H- F internuclear distances, we are able to determine the relative stereochemistry of two fluorinated pharmaceuticals.
ISSN:0749-1581
1097-458X
DOI:10.1002/mrc.4904