Institute of Structural and Molecular Biology, University College London, London, WC1E 6XA, UK.
The Francis Crick Institute, London, NW1 1AT, UK.
Sci Rep. 2017 Oct 26;7(1):14083. doi: 10.1038/s41598-017-13950-8.
Most eukaryotic RNA regulators recognise their RNA and protein partners by the combinatorial use of several RNA binding domains. Inter-domain dynamics and interactions play a key role in recognition and can be analysed by techniques such as NMR or FRET, provided that the information relative to the individual interactions can be de-convoluted. Segmentally labelling the proteins by ligating labelled and unlabelled peptide chains allows one to filter out unwanted information and observe the labelled moieties only. Several strategies have been implemented to ligate two protein fragments, but multiple ligations, which are necessary to segmentally label proteins of more than two domains, are more challenging and often dependent on the structure and solubility of the domains. Here we report a method to ligate multiple protein segments that allows the fast, high yield labelling of both internal and end domains, depending on the requirements. We use TCEP and mercaptophenylacetic acid (MPAA) in an optimised reaction environment to achieve an efficient ligation of protein domains independently from their structure or solubility. We expect the method will provide a useful tool for the molecular study of combinatorial protein-RNA recognition in RNA regulation.
大多数真核 RNA 调节剂通过几个 RNA 结合结构域的组合使用来识别其 RNA 和蛋白质伴侣。结构域间的动力学和相互作用在识别中起着关键作用,可以通过 NMR 或 FRET 等技术进行分析,前提是可以解卷积与各个相互作用相关的信息。通过连接标记和未标记的肽链对蛋白质进行分段标记,可以滤除不需要的信息,只观察标记部分。已经实施了几种策略来连接两个蛋白质片段,但是要对超过两个结构域的蛋白质进行分段标记,需要进行多次连接,这更加具有挑战性,并且通常取决于结构域的结构和可溶性。在这里,我们报告了一种连接多个蛋白质片段的方法,该方法可以根据需要快速、高产地标记内部和末端结构域。我们在优化的反应环境中使用 TCEP 和巯基苯乙酸(MPAA),实现了对蛋白质结构域的高效连接,而与结构域的结构或可溶性无关。我们希望该方法将为 RNA 调节中组合蛋白-RNA 识别的分子研究提供有用的工具。