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Solid-state and solution-phase conformations of pseudoproline-containing dipeptides

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posted on 2024-11-14, 15:52 authored by James R Cochrane, Nima Sayyadi, Danielle SkropetaDanielle Skropeta, Peter Turner, Jack K Clegg, Katrina A Jolliffe
The conformations of 14 threonine-derived pseudoproline-containing dipeptides (including four d-allo-Thr derivatives) have been investigated by NMR. In solution, the major conformer observed for all dipeptides is that in which the amide bond between the pseudoproline and the preceding amino acid is cis. For dipeptides in which the N-terminus is protected, the ratio of cis- to trans-conformers does not depend significantly on the side chain of the N-terminal amino acid, or the stereochemistry of the Thr residue. However, for dipeptides bearing a free N-terminus, there are significant differences in the ratios of cis- to trans-conformers depending on the side chain present. Three dipeptides were crystallized and their X-ray structures determined. In two cases, (benzyloxycarbonyl (Cbz)-Val-Thr(ΨMe,Mepro)-OMe and Cbz-Val-Thr(ΨMe,Mepro)-OH), the dipeptides adopt a trans-conformation in the solid state, in contrast to the structures observed in solution. In the third case, (9-fluorenylmethoxycarbonyl (Fmoc)-Val-d-allo-Thr(ΨMe,Mepro)-OH), a cis-amide geometry is observed. These structural differences are attributed to crystal-packing interactions.

History

Citation

Clegg, J. K., Cochrane, J. R., Sayyadi, N., Skropeta, D., Turner, P., & Jolliffe, K. A. (2009). Solid-state and solution-phase conformations of pseudoproline-containing dipeptides. In Australian Journal of Chemistry Vol. 62 (pp. 711-719). doi:10.1071/CH09151

Journal title

Australian Journal of Chemistry

Volume

62

Issue

7

Pagination

711-719

Publisher website/DOI

Language

English

RIS ID

30226

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