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在三环胸腺嘧啶核苷与二羰基化合物反应中观察到的骨架转变

Skeletal Transformations Observed in the Reaction of a Tricyclic Thymine Nucleoside with Dicarbonyl Compounds.

作者信息

Bonache María-Cruz, -Doyagüez Elisa G, Benito-Arenas Raúl, Bonache M Angeles, Jimeno María-Luisa, San-Félix Ana

机构信息

Instituto de Química Médica (CSIC), Juan de la Cierva 3, 28006 Madrid, Spain.

Centro de Química Orgánica "Lora-Tamayo" (CSIC), Juan de la Cierva 3, 28006 Madrid, Spain.

出版信息

ACS Omega. 2024 Aug 12;9(34):36259-36272. doi: 10.1021/acsomega.4c02553. eCollection 2024 Aug 27.

Abstract

Some intriguing skeletal transformations were observed in the reaction of α-hydroxypyrrolidine thymine nucleoside with different dicarbonyl compounds. In these reactions, unusual ring systems, together with new C-C bonds and stereogenic centers of defined configuration, were formed in a single step. These reactions were initiated by the nucleophilic attack of the NH of the pyrrolidine ring, present on , on one of the carbonyl moieties of a dicarbonyl reagent and seem to proceed through an enamine-iminium mechanism. The present methodology is particularly attractive because no catalyst or aggressive conditions are needed. The new polycyclic nucleosides obtained from can be good scaffolds for diversification. In fact, modification and derivatization can be achieved by performing further chemical transformations of the functional groups present in some of them. This may lead to the formation of new highly functionalized nucleosides. Our results show the high synthetic potential of to construct complex systems in an efficient way. On the other hand, the enamine chemistry involved in the particular reactivity of the α-hydroxy pyrrolidine ring present in has no connection with the nucleobase and could be extended to simple glycosides preserving this essential ring system.

摘要

在α-羟基吡咯烷胸腺嘧啶核苷与不同二羰基化合物的反应中观察到了一些有趣的骨架转变。在这些反应中,不寻常的环系以及具有特定构型的新碳-碳键和立体中心在一步反应中形成。这些反应是由吡咯烷环上的NH对二羰基试剂的一个羰基部分进行亲核进攻引发的,并且似乎是通过烯胺-亚胺鎓机制进行的。目前的方法特别有吸引力,因为不需要催化剂或苛刻的条件。从[具体物质]得到的新的多环核苷可以作为多样化的良好支架。事实上,通过对其中一些核苷中存在的官能团进行进一步的化学转化,可以实现修饰和衍生化。这可能导致形成新的高度官能化的核苷。我们的结果表明[具体物质]具有以高效方式构建复杂体系的高合成潜力。另一方面,[具体物质]中存在的α-羟基吡咯烷环的特殊反应性所涉及的烯胺化学与核碱基无关,并且可以扩展到保留这个基本环系的简单糖苷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a2a/11359620/c09d24df8d04/ao4c02553_0001.jpg

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