Kancharla Pavan K, Crich David
Department of Chemistry, Wayne State University , 5101 Cass Avenue, Detroit, Michigan 48202, United States.
J Am Chem Soc. 2013 Dec 18;135(50):18999-9007. doi: 10.1021/ja410683y. Epub 2013 Dec 9.
Two N-acetyl 4O,5N-oxazolidinone-protected sialyl thioglycosides epimeric at the 7-position have been synthesized and their reactivity and stereoselectivity in glycosylation reactions have been compared. It is demonstrated that the natural 7S-donor is both more reactive and more α-selective than the unnatural 7R-isomer. The difference in reactivity is attributed to the side chain conformation and specifically to the proximity of O7 to the anomeric center. In the natural 7S-isomer, O7 is closer to the anomeric center than in its unnatural 7R-epimer and, therefore, better able to support incipient positive charge at the locus of reaction. The difference in selectivity is also attributed to the side conformation, which in the unnatural 7R-series is placed perpendicularly above the α-face of the donor and so shields it to a greater extent than in the 7S-series. These observations are consistent with earlier conclusions on the influence of the side chain conformation on reactivity and selectivity derived from conformationally locked models in the glucose and galactose series and corroborate the suggestion that those effects are predominantly stereoelectronic rather than torsional. The possible relevance of side chain conformation as a factor in the influence of glycosylation stereoselectivity by remote protecting groups and as a control element in enzymic processes for glycosidic bond formation and hydrolysis are discussed. Methods for assignment of the anomeric configuration in the sialic acid glycosides are critically surveyed.
已合成了两种在7位具有差向异构的N-乙酰基-4O,5N-恶唑烷酮保护的唾液酸硫代糖苷,并比较了它们在糖基化反应中的反应活性和立体选择性。结果表明,天然的7S供体比非天然的7R异构体更具反应活性且α选择性更高。反应活性的差异归因于侧链构象,特别是O7与异头中心的接近程度。在天然的7S异构体中,O7比其非天然的7R差向异构体更靠近异头中心,因此能够更好地支持反应位点处的初始正电荷。选择性的差异也归因于侧链构象,在非天然的7R系列中,侧链构象垂直位于供体的α面上方,因此比7S系列中的屏蔽作用更大。这些观察结果与早期关于侧链构象对葡萄糖和半乳糖系列中构象锁定模型的反应活性和选择性影响的结论一致,并证实了这些影响主要是立体电子而非扭转的观点。讨论了侧链构象作为远程保护基团影响糖基化立体选择性的一个因素以及作为糖苷键形成和水解酶促过程中的控制元件的可能相关性。对唾液酸糖苷中异头构型的确定方法进行了严格审查。