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作为研究 RNase H1 的工具,蛋白质与 RNA 主链之间的二硫键交联。

Disulfide bridge cross-linking between protein and the RNA backbone as a tool to study RNase H1.

机构信息

Structural Biology Center, International Institute of Molecular and Cell Biology, 4 Trojdena St., Warsaw 02-109, Poland; Laboratory of Protein Structure, International Institute of Molecular and Cell Biology, 4 Trojdena St., Warsaw 02-109, Poland.

Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, Poznań 61-704, Poland; FutureSynthesis sp. z o.o. ul. Rubież 46H, Poznań 61-612, Poland.

出版信息

Bioorg Med Chem. 2020 Dec 1;28(23):115741. doi: 10.1016/j.bmc.2020.115741. Epub 2020 Sep 6.

Abstract

The chemical cross-linking of complexes of proteins with nucleic acids is often used in structural and mechanistic studies of these oftentimes unstable and transient complexes. To date, no method has been reported for the thiol-based conjugation of proteins with an RNA backbone, mainly because of instability of the modified ribonucleic acid that is functionalized at the phosphodiester and its rapid hydrolysis. Here, we report the site-specific synthesis of stable RNA oligonucleotides with a thiol-bearing linker that was attached to the phosphodiester backbone, where the ribonucleotide at the cross-linking site was either replaced with 2'-deoxy- or 2'-fluororibonucleotide. The utility of this approach was validated in cross-linking tests with RNase H1, a model protein for RNA/DNA binding and key effector in DNA-like antisense drug therapy. Furthermore, scale-up cross-linking and purification of the complexes confirmed that the method is useful for obtaining preparations of protein-RNA/DNA complexes with purity and stability that are suitable for further biochemical and structural studies. The present approach broadens the repertoire of disulfide-based cross-linking strategies and is a novel tool for the stabilization of protein-RNA complexes in which the interaction occurs via the RNA backbone. This methodology may be broadly applicable to studies of otherwise unstable or transient complexes of proteins with RNA and RNA/DNA.

摘要

蛋白质与核酸复合物的化学交联通常用于这些通常不稳定和瞬态复合物的结构和机制研究。迄今为止,尚未报道用于将具有 RNA 骨架的蛋白质进行基于巯基的共轭的方法,主要是因为在磷酸二酯基处官能化的修饰的核糖核酸的不稳定性及其快速水解。在这里,我们报告了带有硫醇连接体的稳定 RNA 寡核苷酸的定点合成,该连接体连接到磷酸二酯骨架上,其中交联位点处的核糖核苷酸被 2'-脱氧或 2'-氟核糖核苷酸取代。该方法在与 RNase H1 的交联测试中得到了验证,RNase H1 是 RNA/DNA 结合的模型蛋白,也是 DNA 样反义药物治疗中的关键效应因子。此外,规模放大交联和复合物的纯化证实,该方法可用于获得具有适合进一步生化和结构研究的纯度和稳定性的蛋白质-RNA/DNA 复合物制剂。本方法拓宽了二硫键交联策略的范围,是稳定通过 RNA 骨架发生相互作用的蛋白质-RNA 复合物的新工具。该方法可能广泛适用于研究与 RNA 和 RNA/DNA 相互作用的否则不稳定或瞬态的蛋白质复合物。

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