首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Protocol for the Solid-phase Synthesis of Oligomers of RNA Containing a 2-O-thiophenylmethyl Modification and Characterization via Circular Dichroism
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Protocol for the Solid-phase Synthesis of Oligomers of RNA Containing a 2-O-thiophenylmethyl Modification and Characterization via Circular Dichroism

机译:固相合成包含2-O-硫代苯甲基修饰和通过圆二色性表征的RNA低聚物的协议

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摘要

Solid-phase synthesis has been used to obtain canonical and modified polymers of nucleic acids, specifically of DNA or RNA, which has made it a popular methodology for applications in various fields and for different research purposes. The procedure described herein focuses on the synthesis, purification, and characterization of dodecamers of RNA 5'-[CUA CGG AAU CAU]-3' containing zero, one, or two modifications located at the C2'-O-position. The probes are based on 2-thiophenylmethyl groups, incorporated into RNA nucleotides via standard organic synthesis and introduced into the corresponding oligonucleotides via their respective phosphoramidites. This report makes use of phosphoramidite chemistry via the four canonical nucleobases (Uridine (U), Cytosine (C), Guanosine (G), Adenosine (A)), as well as 2-thiophenylmethyl functionalized nucleotides modified at the 2'-O-position; however, the methodology is amenable for a large variety of modifications that have been developed over the years. The oligonucleotides were synthesized on a controlled-pore glass (CPG) support followed by cleavage from the resin and deprotection under standard conditions, i.e., a mixture of ammonia and methylamine (AMA) followed by hydrogen fluoride/triethylamine/N-methylpyrrolidinone. The corresponding oligonucleotides were purified via polyacrylamide electrophoresis (20% denaturing) followed by elution, desalting, and isolation via reversed-phase chromatography (Sep-pak, C18-column). Quantification and structural parameters were assessed via ultraviolet-visible (UV-vis) and circular dichroism (CD) photometric analysis, respectively. This report aims to serve as a resource and guide for beginner and expert researchers interested in embarking in this field. It is expected to serve as a work-in-progress as new technologies and methodologies are developed. The description of the methodologies and techniques within this document correspond to a DNA/RNA synthesizer (refurbished and purchased in 2013) that uses phosphoramidite chemistry.
机译:固相合成已用于获得核酸,特别是DNA或RNA的规范和修饰聚合物,这使其成为在各个领域中应用和不同研究目的的流行方法。本文所述的过程集中于RNA 5'-[CUA CGG AAU CAU] -3'的十二聚体的合成,纯化和表征,所述RNA 5'-位于C2'-O-位的修饰为零,一或两个。探针基于2-硫代苯基甲基,通过标准有机合成掺入RNA核苷酸,并通过其各自的亚磷酰胺引入相应的寡核苷酸。本报告利用亚磷酰胺化学方法通过四个规范的核碱基(尿苷(U),胞嘧啶(C),鸟苷(G),腺苷(A))以及在2'-O-修饰的2-硫代苯基甲基官能化核苷酸位置;但是,该方法适用于多年来开发的各种修改。寡核苷酸在控制孔玻璃(CPG)载体上合成,然后从树脂上裂解并在标准条件下(即氨和甲胺的混合物(AMA),然后是氟化氢/三乙胺/ N-甲基吡咯烷酮)脱保护。相应的寡核苷酸通过聚丙烯酰胺电泳(20%变性)纯化,然后通过反相色谱(Sep-pak,C18柱)洗脱,脱盐和分离。定量和结构参数分别通过紫外可见光(UV-vis)和圆二色性(CD)光度分析进行评估。本报告旨在为有兴趣从事该领域的初学者和专家研究人员提供资源和指南。随着新技术和方法的发展,它有望作为一个正在进行的工作。本文档中有关方法和技术的说明与使用亚磷酰胺化学方法的DNA / RNA合成仪(2013年翻新并购买)相对应。

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