| Literature DB >> 27559421 |
Pramod R Markad1, Navanath Kumbhar1, Dilip D Dhavale1.
Abstract
The C8'-epimeric pyranosyl amino acid core 2 of amipurimycin was synthesized from D-glucose derived alcohol 3 in 13 steps and 14% overall yield. Thus, the Sharpless asymmetric epoxidation of allyl alcohol 7 followed by trimethyl borate mediated regio-selective oxirane ring opening with azide, afforded azido diol 10. The acid-catalyzed 1,2-acetonide ring opening in 10 concomitantly led to the formation of the pyranose ring skeleton to give 2,7-dioxabicyclo[3.2.1]octane 12. Functional group manipulation in 12 gave 21 that on stereoselective β-glycosylation afforded the pyranosyl thymine nucleoside 2 - a core of amipurimycin.Entities:
Keywords: 1,3-anhydrosugar; amipurimycin; anti-fungal agent; carbohydrate; peptidyl nucleosides
Year: 2016 PMID: 27559421 PMCID: PMC4979907 DOI: 10.3762/bjoc.12.165
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Antifungal antibiotic amipurimycin (1).
Scheme 1Retrosynthesis of 2.
Scheme 2Synthesis of 1,3-anhydrosugar 12 and 13.
Scheme 3Formation of 2,7-dioxabicyclo[3.2.1]octane 12/13.
Figure 2Conformational analysis of 13 and 14.
Figure 3Geometrically optimized conformation of 12 and 13 respectively by DFT study.
Geometrical parameters for hydrogen bonding and torsion angles for 12 and 13.
| Comp. | Atoms involved in H-bonds | Distance in Å | Angle in degree | Torsion angle values | Energy in atomic units (au) |
| O5’···H-C7’ | 2.480 | 98.74 | θ = H4’a–C4’–C5’–H5’ | −1583.424 au | |
| O5’···H-C7’ | 2.426 | 99.68 | θ = H4’a–C4–C5–H5’ | −1583.420 au | |
Scheme 4Glycosylation of 16.
Scheme 5Glycosylation attempt by changing protections.
Scheme 6Synthesis of nucleoside 2.