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斯库拉霉素的合成研究:全合成及简化类似物的生成

Synthetic Studies Toward the Skyllamycins: Total Synthesis and Generation of Simplified Analogues.

作者信息

Giltrap Andrew M, Haeckl F P Jake, Kurita Kenji L, Linington Roger G, Payne Richard J

机构信息

School of Chemistry , The University of Sydney , Sydney , NSW 2006 , Australia.

Department of Chemistry , Simon Fraser University , Burnaby , British Columbia BC V5A 1S6 , Canada.

出版信息

J Org Chem. 2018 Jul 6;83(13):7250-7270. doi: 10.1021/acs.joc.8b00898. Epub 2018 Jun 11.

DOI:10.1021/acs.joc.8b00898
PMID:29798664
Abstract

Herein, we report our synthetic studies toward the skyllamycins, a highly modified class of nonribosomal peptide natural products which contain a number of interesting structural features, including the extremely rare α-OH-glycine residue. Before embarking on the synthesis of the natural products, we prepared four structurally simpler analogues. Access to both the analogues and the natural products first required the synthesis of a number of nonproteinogenic amino acids, including three β-OH amino acids that were accessed from the convenient chiral precursor Garner's aldehyde. Following the preparation of the suitably protected nonproteinogenic amino acids, the skyllamycin analogues were assembled using a solid-phase synthetic route followed by a final stage solution-phase cyclization reaction. To access the natural products (skyllamycins A-C) the synthetic route used for the analogues was modified. Specifically, linear peptide precursors containing a C-terminal amide were synthesized via solid-phase peptide synthesis. After cleavage from the resin the N-terminal serine residue was oxidatively cleaved to a glyoxyamide moiety. The target natural products, skyllamycins A-C, were successfully prepared via a final step cyclization with concomitant formation of the unusual α-OH-glycine residue. Purification and spectroscopic comparison to the authentic isolated material confirmed the identity of the synthetic natural products.

摘要

在此,我们报告了对斯库拉霉素的合成研究,斯库拉霉素是一类经过高度修饰的非核糖体肽天然产物,具有许多有趣的结构特征,包括极其罕见的α-羟基甘氨酸残基。在着手合成天然产物之前,我们制备了四种结构更简单的类似物。要获得这些类似物和天然产物,首先需要合成多种非蛋白质氨基酸,包括从方便的手性前体加纳醛获得的三种β-羟基氨基酸。在制备好适当保护的非蛋白质氨基酸后,通过固相合成路线组装斯库拉霉素类似物,随后进行最后阶段的溶液相环化反应。为了获得天然产物(斯库拉霉素A-C),对用于合成类似物的路线进行了修改。具体而言,通过固相肽合成法合成了含有C端酰胺的线性肽前体。从树脂上切割下来后,N端丝氨酸残基被氧化裂解为乙醛酰胺部分。通过最后一步环化反应并伴随形成不寻常的α-羟基甘氨酸残基,成功制备了目标天然产物斯库拉霉素A-C。通过纯化并与真实分离得到的物质进行光谱比较,确认了合成天然产物的身份。

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