5′-Epimeric 3′-deoxy-3′,4′-didehydronucleoside-5′-C-phosphonates: synthesis and structural assignment by NMR and X-ray analyses
-
Add time:08/07/2019 Source:sciencedirect.com
Epimeric 5′-(RS) dialkyl 3′-deoxy-3′,4′-didehydro-5′-C-phosphonates were prepared by nucleophilic addition of various dialkyl phosphites to 3′-deoxy-3′,4′-didehydronucleoside-5′-aldehydes. Whereas direct NMR configuration assignment for the C5′ atom bearing the phosphoryl and hydroxy groups using the J (P,H4′) and J (H5′,H4′) coupling constants is impossible due to the absence of the H4′ atom, successful separation, crystallisation and X-ray crystallographic analysis of a pair of epimeric 5′-C-phosphonates, followed by correlation with a series of NMR parameters, led to efficacious configuration assignment of individual epimers in the mixtures.
We also recommend Trading Suppliers and Manufacturers of Uridine, 4',5'-didehydro-5'-deoxy- (cas 14365-63-0). Pls Click Website Link as below: cas 14365-63-0 suppliers
Prev:Synthesis and P2Y2 receptor agonist activities of uridine 5′-phosphonate analogues
Next:Effects of modifications in the pentose moiety and conformational changes on the binding of nucleoside ligands to uridine phosphorylase from Toxoplasma gondii) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Synthesis of new 2′, 3′-modified uridine derivatives from 2′,3′-ene-2′-phenylselenonyl uridine by Michael addition reactions08/11/2019
- Selective protection of toxicity of 2′,3′-dideoxypyrimidine nucleoside analogs by β-d08/10/2019
- Thermal degradation of sugar-modified uridine N-oxides: Olefination, oxazolidination and rearrangements08/09/2019
- Effects of modifications in the pentose moiety and conformational changes on the binding of nucleoside ligands to uridine phosphorylase from Toxoplasma gondii08/08/2019
- Synthesis and P2Y2 receptor agonist activities of uridine 5′-phosphonate analogues08/06/2019
- Synthesis of 3′-deoxyadenosine-3′-spirocyclopropane, 3′-deoxy-uridine-3′-spirocyclopropane, and 5′-deoxy-4′,5′-methanoadenosine08/05/2019


