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位点特异性修饰核糖开关结构域的制备,作为化学合成RNA片段酶促连接的一个实例。

The preparation of site-specifically modified riboswitch domains as an example for enzymatic ligation of chemically synthesized RNA fragments.

作者信息

Lang Kathrin, Micura Ronald

机构信息

Institute of Organic Chemistry, Center for Molecular Biosciences Innsbruck, Leopold Franzens University, Innrain 52a, A-6020 Innsbruck, Austria.

出版信息

Nat Protoc. 2008;3(9):1457-66. doi: 10.1038/nprot.2008.135.

Abstract

This protocol describes an efficient method for the preparation of riboswitch domains comprising up to approximately 200 nt containing site-specific nucleoside modifications. The strategy is based on enzymatic ligation of chemically synthesized RNA fragments. The design of ligation sites strictly follows the criterion that all fragments comprise less than approximately 50 nt. This allows the researcher to rely on custom synthesis services and to utilize the large pool of commercially available, functionalized nucleoside phosphoramidites for solid-phase RNA synthesis. Importantly, this design renders utmost flexibility to position a chemical modification (e.g., a fluorescence label) within the RNA. Selection of the appropriate ligation type (using T4 RNA or T4 DNA ligase) is subordinate to the criteria above and is detailed in the protocol. The whole concept is demonstrated for 2-aminopurine containing thiamine pyrophosphate responsive riboswitch domains that are applied in fluorescence spectroscopic folding studies. Labeled samples in 5-35 nmol quantities are obtained within 3-4 d, not including the time for fragment synthesis.

摘要

本方案描述了一种高效制备核糖开关结构域的方法,该结构域包含多达约200个核苷酸,并含有位点特异性核苷修饰。该策略基于化学合成RNA片段的酶促连接。连接位点的设计严格遵循所有片段包含少于约50个核苷酸的标准。这使得研究人员能够依赖定制合成服务,并利用大量可商购的功能化核苷亚磷酰胺用于固相RNA合成。重要的是,这种设计在将化学修饰(例如荧光标记)定位在RNA内时具有极大的灵活性。选择合适的连接类型(使用T4 RNA或T4 DNA连接酶)服从于上述标准,并在方案中详细说明。整个概念通过应用于荧光光谱折叠研究的含2-氨基嘌呤的硫胺焦磷酸响应核糖开关结构域得到了证明。在3-4天内可获得5-35 nmol量的标记样品,不包括片段合成时间。

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