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将螺环缩酮内外翻转:由烯醇醚环氧化引发的重排反应

Turning Spiroketals Inside Out: A Rearrangement Triggered by an Enol Ether Epoxidation.

作者信息

Lorenc Chris, Saurí Josep, Moser Arvin, Buevich Alexei V, Williams Antony J, Williamson R Thomas, Martin Gary E, Peczuh Mark W

机构信息

Department of Chemistry, University of Connecticut 55 N. Eagleville Road, U3060, Storrs, CT, 06269, USA.

Process & Analytical Chemistry, NMR Structure Elucidation, Merck Research Laboratories Rahway, NJ, 07065, USA.

出版信息

ChemistryOpen. 2015 Oct;4(5):577-80. doi: 10.1002/open.201500122. Epub 2015 Jun 17.

Abstract

Spiroketals organize small molecule structures into well-defined, three-dimensional configurations that make them good ligands of proteins. We recently discovered a tandem cycloisomerization-dimerization reaction of alkynyl hemiketals that delivered polycyclic, enol-ether-containing spiroketals. Here we describe rearrangements of those compounds, triggered by epoxidation of their enol ethers that completely remodel their structures, essentially turning them "inside out". Due to the high level of substitution on the carbon skeletons of the substrates and products, characterization resorted to X-ray crystallography and advanced computation and NMR techniques to solve the structures of representative compounds. In particular, a new proton-detected ADEQUATE NMR experiment (1,1-HD-ADEQUATE) enabled the unequivocal assignment of the carbon skeleton of one of the new compounds. Solution of the structures of the representative compounds allowed for the assignment of product structures for the other compounds in two separate series. Both the rearrangement and the methods used for structural determination of the products are valuable tools for the preparation of characterization of new small molecule compounds.

摘要

螺环缩酮将小分子结构组织成明确的三维构型,这使得它们成为蛋白质的良好配体。我们最近发现了一种炔基半缩酮的串联环异构化-二聚反应,该反应生成了含多环、烯醇醚的螺环缩酮。在此,我们描述了这些化合物的重排反应,该反应由它们烯醇醚的环氧化引发,彻底重塑了它们的结构,基本上使其“内外翻转”。由于底物和产物碳骨架上的取代程度较高,表征工作借助X射线晶体学、先进的计算方法和核磁共振技术来解析代表性化合物的结构。特别是,一种新的质子检测的全相关二维核磁共振实验(1,1-HD-ADEQUATE)能够明确确定其中一种新化合物的碳骨架。代表性化合物结构的解析使得能够确定另外两个独立系列中其他化合物的产物结构。重排反应以及用于产物结构测定的方法都是制备和表征新小分子化合物的宝贵工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b94/4608522/c400d0ef4712/open0004-0577-f1.jpg

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