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手性选择性合成尿苷衍生的核苷氨基酸。

Stereoselective synthesis of uridine-derived nucleosyl amino acids.

机构信息

Department of Chemistry, Institute of Organic and Biomolecular Chemistry, Georg-August-University Göttingen, Tammannstr. 2, 37 077 Göttingen, Germany.

出版信息

J Org Chem. 2011 Dec 16;76(24):10083-98. doi: 10.1021/jo201935w. Epub 2011 Nov 21.

Abstract

Novel hybrid structures of 5'-deoxyuridine and glycine were conceived and synthesized. Such nucleosyl amino acids (NAAs) represent simplified analogues of the core structure of muraymycin nucleoside antibiotics, making them useful synthetic building blocks for structure-activity relationship (SAR) studies. The key step of the developed synthetic route was the efficient and highly diastereoselective asymmetric hydrogenation of didehydro amino acid precursors toward protected NAAs. It was anticipated that the synthesis of unprotected muraymycin derivatives via this route would require a suitable intermediate protecting group at the N-3 of the uracil base. After initial attempts using PMB- and BOM-N-3 protection, both of which resulted in problematic deprotection steps, an N-3 protecting group-free route was envisaged. In spite of the pronounced acidity of the uracil-3-NH, this route worked equally efficient and with identical stereoselectivities as the initial strategies involving N-3 protection. The obtained NAA building blocks were employed for the synthesis of truncated 5'-deoxymuraymycin analogues.

摘要

设计并合成了 5'-脱氧尿苷和甘氨酸的新型杂化结构。这些核苷氨基酸(NAAs)是作为默拉霉素核苷抗生素核心结构的简化类似物,是用于结构-活性关系(SAR)研究的有用的合成砌块。所开发的合成路线的关键步骤是对保护的 NAAs 的二脱氢氨基酸前体进行高效且高度非对映选择性的不对称氢化。预计通过该路线合成未保护的默拉霉素衍生物需要在尿嘧啶碱基的 N-3 上使用合适的中间保护基。在最初尝试使用 PMB-和 BOM-N-3 保护后,这两种方法都导致了有问题的脱保护步骤,因此设想了一种无 N-3 保护基的路线。尽管尿嘧啶-3-NH 的酸性很强,但该路线与涉及 N-3 保护的初始策略一样高效且具有相同的立体选择性。所获得的 NAA 砌块被用于合成截断的 5'-去氧默拉霉素类似物。

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