The direct and chemoselective 3′-phosphoramidation, phosphorylation and acylation of nucleosides are described. Upon the discovery of a novel 3′-phosphorylamidation of therapeutic nucleoside analogues with DBU, we explored the mechanism of this rare selectivity through a combination of NMR spectroscopy and computational studies. The NMR and computational findings allowed us to develop a predictive computational model that accurately assesses the potential for 3′-functionalization for a broad range of nucleosides and nucleoside mimetics. The synthetic utility of this model was exemplified by demonstration on a broad scope of nucleosides and electrophiles yielding targets that were previously only accessible via a protection/deprotection sequence or an enzymatic approach.
CITATION STYLE
McCabe Dunn, J. M., Reibarkh, M., Sherer, E. C., Orr, R. K., Ruck, R. T., Simmons, B., & Bellomo, A. (2017). The protecting-group free selective 3′-functionalization of nucleosides. Chemical Science, 8(4), 2804–2810. https://doi.org/10.1039/c6sc05081f
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