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在珠上进行 RNA 文库的尾注/连接方法。

An on-bead tailing/ligation approach for sequencing resin-bound RNA libraries.

机构信息

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

出版信息

Nucleic Acids Res. 2012 May;40(9):e68. doi: 10.1093/nar/gks004. Epub 2012 Jan 31.

Abstract

Nucleic acids possess the unique property of being enzymatically amplifiable, and have therefore been a popular choice for the combinatorial selection of functional sequences, such as aptamers or ribozymes. However, amplification typically requires known sequence segments that serve as primer binding sites, which can be limiting for certain applications, like the screening of on-bead libraries. Here, we report a method to amplify and sequence on-bead RNA libraries that requires not more than five known nucleotides. A key element is the attachment of the starting nucleoside to the synthesis resin via the nucleobase, which leaves the 3'-OH group accessible to subsequent enzymatic manipulations. After split-and-mix synthesis of the oligonucleotide library and deprotection, a poly(A)-tail can be efficiently added to this free 3'-hydroxyl terminus by Escherichia coli poly(A) polymerase that serves as an anchored primer binding site for reverse transcription. The cDNA is joined to a DNA adapter by T4 DNA ligase. PCR amplification yielded single-band products that could be cloned and sequenced starting from individual polystyrene beads. The method described here makes the selection of functional RNAs from on-bead RNA libraries more attractive due to increased flexibility in library design, higher yields of full-length sequence on bead and robust sequence determination.

摘要

核酸具有酶促扩增的独特性质,因此一直是功能序列(如适体或核酶)组合选择的热门选择。然而,扩增通常需要作为引物结合位点的已知序列片段,这对于某些应用(例如珠上文库的筛选)可能会受到限制。在这里,我们报告了一种在珠上 RNA 文库中扩增和测序的方法,该方法需要的已知核苷酸不超过五个。一个关键要素是通过核碱基将起始核苷连接到合成树脂上,这使得 3'-OH 基团可用于后续的酶促操作。寡核苷酸文库的分裂和混合合成以及脱保护后,大肠杆菌多聚 A 聚合酶可以有效地将聚 A-尾添加到该游离 3'-羟基末端,该聚合酶作为反向转录的锚定引物结合位点。cDNA 通过 T4 DNA 连接酶与 DNA 接头连接。PCR 扩增得到单带产物,可以从单个聚苯乙烯珠开始进行克隆和测序。与传统方法相比,该方法通过提高文库设计的灵活性、提高珠上全长序列的产量以及稳健的序列测定,使得从珠上 RNA 文库中选择功能性 RNA 变得更具吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f15a/3351178/30815b32f518/gks004s1.jpg

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