通过chemp - clip与毛细管电泳和纳米孔测序协同定位小分子rna结合位点。

IF 16.6 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xueyi Yang, Jielei Wang, Noah A Springer, Patrick R A Zanon, Yilin Jia, Xiaoxuan Su, Matthew D Disney
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引用次数: 0

摘要

靶标验证和结合位点的鉴定是开发靶向RNA的生物活性小分子的关键。在这里,我们描述了优化的方案来分析小分子- rna相互作用,并使用共价化学来定义rna中小分子的结合位点。研究了附加在RNA结合小分子上的各种反应模块与RNA靶标的交联。亲电模块,无论是n -氯乙基苯胺还是重氮嘧啶,都具有与诱导接近一致的反应谱;然而,含有n -氯乙基苯胺的探针比含有重氮嘧啶交联片段的探针更具活性和特异性。根据交联模块的身份,形成了靠近小分子结合位点的不同核苷酸的共价加合物。发生交联的核苷酸通过使用两种不同的平台进行了鉴定:(i)通过阻断逆转录酶或“RT停止”来识别结合位点的自动毛细管电泳;(ii)纳米孔测序,其中交联产生相应的互补DNA突变,通过逆转录-聚合酶链反应扩增交联RNA。这些方法广泛适用于帮助推进靶向RNA的化学探针,包括鉴定结合位点和使用共价化学以高通量形式筛选RNA结合分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping small molecule-RNA binding sites via Chem-CLIP synergized with capillary electrophoresis and nanopore sequencing.

Target validation and identification of binding sites are keys to the development of bioactive small molecules that target RNA. Herein, we describe optimized protocols to profile small molecule-RNA interactions and to define binding sites of the small molecules in RNAs using covalent chemistry. Various reactive modules appended to an RNA-binding small molecule were studied for cross-linking to the RNA target. Electrophilic modules, whether N-chloroethyl aniline or diazirine, have reactive profiles consistent with induced proximity; however, probes with N-chloroethyl aniline were more reactive and more specific than those with a diazirine cross-linking moiety. Depending upon the identity of the cross-linking module, covalent adducts with different nucleotides that are proximal to a small molecule's binding site were formed. The nucleotides where cross-linking occurred were elucidated by using two different platforms: (i) automated capillary electrophoresis that identified a binding site by impeding reverse transcriptase, or "RT stops"; and (ii) nanopore sequencing where the cross-link produces mutations in the corresponding complementary DNA formed by reverse transcriptase-polymerase chain reaction amplification of the cross-linked RNA. These approaches are broadly applicable to aid in the advancement of chemical probes targeting RNA, including identifying binding sites and using covalent chemistry to screen for RNA-binding molecules in a high throughput format.

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来源期刊
Nucleic Acids Research
Nucleic Acids Research 生物-生化与分子生物学
CiteScore
27.10
自引率
4.70%
发文量
1057
审稿时长
2 months
期刊介绍: Nucleic Acids Research (NAR) is a scientific journal that publishes research on various aspects of nucleic acids and proteins involved in nucleic acid metabolism and interactions. It covers areas such as chemistry and synthetic biology, computational biology, gene regulation, chromatin and epigenetics, genome integrity, repair and replication, genomics, molecular biology, nucleic acid enzymes, RNA, and structural biology. The journal also includes a Survey and Summary section for brief reviews. Additionally, each year, the first issue is dedicated to biological databases, and an issue in July focuses on web-based software resources for the biological community. Nucleic Acids Research is indexed by several services including Abstracts on Hygiene and Communicable Diseases, Animal Breeding Abstracts, Agricultural Engineering Abstracts, Agbiotech News and Information, BIOSIS Previews, CAB Abstracts, and EMBASE.
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