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通过逆电子需求 Diels-Alder 反应对 DNA 进行后合成修饰。

Post-synthetic modification of DNA by inverse-electron-demand Diels-Alder reaction.

机构信息

Institute of Pharmacy and Molecular Biotechnology, Heidelberg University, Im Neuenheimer Feld 364, Heidelberg 69120, Germany.

出版信息

J Am Chem Soc. 2010 Jul 7;132(26):8846-7. doi: 10.1021/ja102871p.

Abstract

There is currently a tremendous interest in developing bioorthogonal "click chemistry" methods for the modification of biopolymers. Very recently, inverse-electron-demand Diels-Alder reactions have received attention, but to date they have not been applied to nucleic acids. Here we describe the first example of DNA modification by inverse-electron-demand Diels-Alder reaction. We synthesized four different building blocks for 3'-terminal, 5'-terminal, and internal incorporation of norbornene dienophiles into oligonucleotides. These DNA strands were either directly reacted with suitably derivatized tetrazine dienes or first subjected to enzymatic manipulations. We demonstrate that the inverse-electron-demand Diels-Alder reaction allows efficient site-specific post-synthetic conjugation, often at a 1:1 stoichiometry, without any side reaction. The reaction works in aqueous media at room temperature, and no transition metals are required. Both short chemically synthesized oligonucleotides and long enzymatically amplified DNA strands were successfully conjugated.

摘要

目前,人们对开发用于生物聚合物修饰的生物正交“点击化学”方法有着极大的兴趣。最近,逆电子需求 Diels-Alder 反应受到了关注,但迄今为止,它们尚未应用于核酸。在这里,我们描述了首例通过逆电子需求 Diels-Alder 反应修饰 DNA 的例子。我们合成了四个不同的砌块,用于将降冰片二烯亲二烯体掺入寡核苷酸的 3'末端、5'末端和内部。这些 DNA 链要么直接与适当衍生化的四嗪二烯反应,要么首先进行酶促操作。我们证明,逆电子需求 Diels-Alder 反应允许高效的、位点特异性的、后合成的共轭,通常为 1:1 的化学计量比,没有任何副反应。该反应在室温下的水相介质中进行,不需要过渡金属。短的化学合成寡核苷酸和长的酶扩增 DNA 链都能成功地连接。

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