Shanmugasundaram Muthian, Senthilvelan Annamalai, Kore Anilkumar R
Life Sciences Solutions Group, Thermo Fisher Scientific, Austin, Texas.
Curr Protoc Nucleic Acid Chem. 2019 Jun;77(1):e81. doi: 10.1002/cpnc.81. Epub 2019 Mar 18.
The utilization of 5-aminopropargyl nucleotide serves as a versatile molecular biology tool for the introduction of functional groups into a nucleic acid target of interest by using in-vitro enzymatic incorporation method. This article describes a simple, reliable, general, and efficient two-step chemical method for the synthesis of 5-(3-aminopropargyl)-2'-deoxycytidine-5'-O-triphosphate, 5-(3-aminopropargyl)-cytidine-5'-O-triphosphate, 5-(3-aminopropargyl)-2'-deoxyuridine-5'-O-triphosphate, and 5-(3-aminopropargyl)-uridine-5'-O-triphosphate, starting from the corresponding pyrimidine triphosphate. The first step involves regioselective C-5 iodination of pyrimidine triphosphate using N-iodosuccinimide and sodium azide. In the second step, propargylamine is coupled to the iodo-pyrimidine using the palladium-catalyzed Sonogashira reaction, producing good yields of highly pure (>99.5% HPLC) 5-aminopropargyl-pyrimidine-5'-O-triphosphate. In this approach, the palladium-catalyzed Sonogashira coupling reaction is highly chemoselective and does not involve protection and deprotection. © 2019 by John Wiley & Sons, Inc.
5-氨基炔丙基核苷酸的利用作为一种通用的分子生物学工具,通过体外酶促掺入法将官能团引入到感兴趣的核酸靶标中。本文描述了一种简单、可靠、通用且高效的两步化学方法,用于从相应的嘧啶三磷酸开始合成5-(3-氨基丙炔基)-2'-脱氧胞苷-5'-O-三磷酸、5-(3-氨基丙炔基)-胞苷-5'-O-三磷酸、5-(3-氨基丙炔基)-2'-脱氧尿苷-5'-O-三磷酸和5-(3-氨基丙炔基)-尿苷-5'-O-三磷酸。第一步涉及使用N-碘代琥珀酰亚胺和叠氮化钠对嘧啶三磷酸进行区域选择性C-5碘化。第二步,使用钯催化的Sonogashira反应将炔丙胺与碘代嘧啶偶联,高产率地生成高纯度(>99.5% HPLC)的5-氨基炔丙基-嘧啶-5'-O-三磷酸。在这种方法中,钯催化的Sonogashira偶联反应具有高度的化学选择性,且不涉及保护和脱保护。© 2019约翰威立国际出版公司。