Yue Zhang, Jia-ying Xue, Xiao-can Su, Wen-jie Xiao, Jing-yi Lv, Wen-xia Shi, Yong Zou, Ming Yan* and Xue-jing Zhang*,
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引用次数: 0
摘要
在本报告中,我们介绍了一种光催化、无金属的苯基叠氮化物反式转化技术,用于合成 DNA 编码的七元环。这种转化是通过针对苯基团的骨架编辑策略和可逆吸附到固体支持物(RASS)策略高效实现的。现在可以获得各种有价值的 DNA编码七元环化合物,包括 DNA编码的 3H-氮杂环庚烷、氮杂环庚酮和非天然氨基酸。最重要的是,这种 DNA 兼容方案还可用于引入复杂的分子,洛卡西林和倍他司汀就是一个例子。将容易获得的苯基环选择性地转化为高价值的七元环,为构建多样化的类药物 DNA 编码库提供了一条前景广阔的途径。
Skeletal Editing of Benzene Motif: Photopromoted Transannulation for Synthesis of DNA-Encoded Seven-Membered Rings
In this report, we present a photopromoted, metal-free transannulation of phenyl azides for the synthesis of DNA-encoded seven-membered rings. The transformation is efficiently achieved through a skeletal editing strategy targeting the benzene motif coupled with a Reversible Adsorption to Solid Support (RASS) strategy. A variety of valuable DNA-encoded seven-membered ring compounds, including DNA-encoded 3H-azepines, azepinones, and unnatural amino acids, are now accessible. Crucially, this DNA-compatible protocol can also be applied for the introduction of complex molecules, as exemplified by Lorcaserin and Betahistine. The selective conversion of readily available phenyl rings into high-value seven-membered rings offers a promising avenue for the construction of diversified and drug-like DNA-encoded library.
期刊介绍:
Organic Letters invites original reports of fundamental research in all branches of the theory and practice of organic, physical organic, organometallic,medicinal, and bioorganic chemistry. Organic Letters provides rapid disclosure of the key elements of significant studies that are of interest to a large portion of the organic community. In selecting manuscripts for publication, the Editors place emphasis on the originality, quality and wide interest of the work. Authors should provide enough background information to place the new disclosure in context and to justify the rapid publication format. Back-to-back Letters will be considered. Full details should be reserved for an Article, which should appear in due course.