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用于组装碱基修饰核苷的串联同金属或多金属催化

Tandem Homometallic or Multimetallic Catalysis for Assembly of Base-Modified Nucleosides.

作者信息

Shet Harshita, Bhilare Shatrughn, Sanghvi Yogesh S, Kapdi Anant R

机构信息

Department of Chemistry, Institute of Chemical Technology-Indian Oil Odisha Campus, IIT Kharagpur Extension Centre, Mouza Samantpuri, Bhubaneswar, Odisha, India.

Institute of Chemical Technology, Mumbai, India.

出版信息

Curr Protoc Nucleic Acid Chem. 2020 Dec;83(1):e117. doi: 10.1002/cpnc.117.

Abstract

Tandem catalysis has been at the forefront of synthesis in the past decade due to the reduction in the number of steps and purification needed for the synthesis of commercially relevant molecules. With the right combination of catalyst systems, which could be homometallic or multimetallic, one can construct complex structural motifs in a one-pot procedure without the requirement for the isolation of the intermediates, reducing both reagent waste and time. Over the years, application of tandem catalysis has certainly extended towards arene and heteroarene motifs; nucleoside modification using such a strategy has been rare. In this regard, we would like to report herein the development of numerous homometallic and multimetallic tandem catalytic protocols for the modification of nucleosides, providing efficient access to a diverse range of molecules with promising fluorescent properties, as well as pharmaceutically relevant antiviral drugs such as FV-100. © 2020 Wiley Periodicals LLC. Basic Protocol 1: Double tandem one-pot Sonogashira/cyclization of 5-IdU for the synthesis of FV-100 and analogs Basic Protocol 2: Double tandem one-pot Heck/Suzuki-Miyaura of 5-IdU for the synthesis of fluorescent nucleoside analogs Basic Protocol 3: Double tandem one-pot Suzuki-Miyaura cross-coupling of 5-IdU for the synthesis of fluorescent nucleoside analogs Basic Protocol 4: Double tandem one-pot amination/amidation for the synthesis of Sangivamycin precursor Basic Protocol 5: Triple tandem one-pot chemoselective etherification/Sonogashira coupling/cyclization for synthesis of BCNA analogs Basic Protocol 6: Triple tandem one-pot sequential Heck/borylation/Suzuki-Miyaura reaction.

摘要

在过去十年中,串联催化一直处于合成领域的前沿,因为它减少了合成具有商业价值分子所需的步骤数量和纯化过程。通过正确组合催化剂体系(可以是单金属或多金属的),可以在一锅法中构建复杂的结构单元,而无需分离中间体,从而减少了试剂浪费和时间。多年来,串联催化的应用肯定已经扩展到芳烃和杂芳烃结构单元;使用这种策略进行核苷修饰的情况却很少见。在这方面,我们在此报告众多用于核苷修饰的单金属和多金属串联催化方案的开发,这些方案能有效合成多种具有良好荧光特性的分子,以及诸如FV-100等具有药学相关性的抗病毒药物。© 2020威利期刊有限责任公司。基本方案1:5-碘脱氧尿苷的双串联一锅法Sonogashira反应/环化反应以合成FV-100及其类似物 基本方案2:5-碘脱氧尿苷的双串联一锅法Heck反应/Suzuki-Miyaura反应以合成荧光核苷类似物 基本方案3:5-碘脱氧尿苷的双串联一锅法Suzuki-Miyaura交叉偶联反应以合成荧光核苷类似物 基本方案4:双串联一锅法胺化/酰胺化反应以合成桑吉瓦霉素前体 基本方案5:三串联一锅法化学选择性醚化反应/Sonogashira偶联反应/环化反应以合成BCNA类似物 基本方案6:三串联一锅法连续Heck反应/硼化反应/Suzuki-Miyaura反应。

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