Cancer Research UK Nucleic Acid Structure Research Group, MSI/WTB Complex, The University of Dundee, Dundee DD1 5EH, United Kingdom.
RNA. 2019 Apr;25(4):423-430. doi: 10.1261/rna.069567.118. Epub 2019 Jan 4.
We have designed structure-based ligands for the guanidine-II riboswitch that bind with enhanced affinity, exploiting the twin binding sites created by loop-loop interaction. We synthesized diguanidine species, comprising two guanidino groups covalently connected by C linkers where = 4 or 5. Calorimetric and fluorescent analysis shows that these ligands bind with a 10-fold higher affinity to the riboswitch compared to guanidine. We determined X-ray crystal structures of the riboswitch bound to the new ligands, showing that the guanidino groups are bound to both nucleobases and backbone within the binding pockets, analogously to guanidine binding. The connecting chain passes through side openings in the binding pocket and traverses the minor groove of the RNA. The combination of the riboswitch loop-loop interaction and our novel ligands has potential applications in chemical biology.
我们设计了针对胍基 II 核糖开关的基于结构的配体,利用由环-环相互作用产生的两个结合位点,以增强亲和力。我们合成了双胍类物质,由通过 C 接头连接的两个胍基基团组成,其中 = 4 或 5。量热和荧光分析表明,与胍相比,这些配体与核糖开关的结合亲和力提高了 10 倍。我们确定了与新配体结合的核糖开关的 X 射线晶体结构,表明胍基基团结合在结合口袋内的碱基和骨架上,类似于胍的结合。连接链穿过结合口袋的侧开口,并穿过 RNA 的小沟。核糖开关的环-环相互作用和我们的新型配体的结合具有在化学生物学中的潜在应用。