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基于呋喃氧化的交联:一种研究和靶向核酸与蛋白质相互作用的新方法。

Furan oxidation based cross-linking: a new approach for the study and targeting of nucleic acid and protein interactions.

作者信息

Carrette L L G, Gyssels E, De Laet N, Madder A

机构信息

Organic and Biomimetic Chemistry Research Group, Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan 281 S4, 9000 Gent, Belgium.

出版信息

Chem Commun (Camb). 2016 Jan 28;52(8):1539-54. doi: 10.1039/c5cc08766j. Epub 2015 Dec 17.

Abstract

Furan mediated nucleic acid cross-linking, initially developed for DNA interstrand duplex cross-linking, has matured into a versatile tool for the study of protein and nucleic acid interactions, ready to face its applications. The methodology was initially developed for easy and clean chemical generation of DNA interstrand cross-linked duplexes, but has been further expanded for use with other probes, targets and triggers, now allowing mild biologically significant cross-linking with potential therapeutic benefit. It was shown that the methodology could be repurposed for RNA interstrand cross-linking, which is very relevant in today's antisense approaches or miRNA target identification endeavors. This further illustrates the furan oxidation method's generality and mildness, especially when using red light for oxidation. A complementary antigene approach has been explored through duplex targeting with furan modified triplex forming oligonucleotides (TFOs) and DNA binding proteins. Also targeting of peptides and proteins by furan-modified DNA and peptides has been explored. Thorough methodology examination exploring variable reaction conditions in combination with a series of different furan-modified building blocks and application of different activation signals resulted in a detailed understanding of the mechanisms involved and factors influencing the yield and selectivity of the reaction. In order to draw the bigger picture of the scope and limitations of furan-oxidation cross-linking, we here provide a unique side by side comparison and discussion of our published data, supplemented with unpublished results, providing a clear performance report of the currently established furan toolbox and its application potential in various biomacromolecular complexes.

摘要

呋喃介导的核酸交联最初是为DNA链间双链交联而开发的,现已发展成为研究蛋白质与核酸相互作用的通用工具,并准备好迎接其应用。该方法最初是为简便、纯净地化学生成DNA链间交联双链体而开发的,但已进一步扩展,可用于其他探针、靶标和触发因素,现在能够实现具有潜在治疗益处的温和的生物学意义交联。研究表明,该方法可重新用于RNA链间交联,这在当今的反义方法或miRNA靶标鉴定研究中非常重要。这进一步说明了呋喃氧化方法的通用性和温和性,尤其是在使用红光进行氧化时。通过用呋喃修饰的三链形成寡核苷酸(TFO)和DNA结合蛋白进行双链靶向,探索了一种互补的反基因方法。还探索了用呋喃修饰的DNA和肽对肽和蛋白质的靶向。通过探索可变反应条件,结合一系列不同的呋喃修饰构建块,并应用不同的激活信号,对方法进行了全面研究,从而详细了解了所涉及的机制以及影响反应产率和选择性的因素。为了全面了解呋喃氧化交联的范围和局限性,我们在此对已发表的数据进行了独特的并列比较和讨论,并补充了未发表的结果,提供了当前已建立的呋喃工具箱的清晰性能报告及其在各种生物大分子复合物中的应用潜力。

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