Department of Biochemistry, University of Colorado, Boulder, Colorado, CO 80309, USA.
Molecules. 2020 May 13;25(10):2295. doi: 10.3390/molecules25102295.
Riboswitches are important model systems for the development of approaches to search for RNA-targeting therapeutics. A principal challenge in finding compounds that target riboswitches is that the effector ligand is typically almost completely encapsulated by the RNA, which severely limits the chemical space that can be explored. Efforts to find compounds that bind the guanine/adenine class of riboswitches with a high affinity have in part focused on purines modified at the C6 and C2 positions. These studies have revealed compounds that have low to sub-micromolar affinity and, in a few cases, have antimicrobial activity. To further understand how these compounds interact with the guanine riboswitch, we have performed an integrated structural and functional analysis of representative guanine derivatives with modifications at the C8, C6 and C2 positions. Our data indicate that while modifications of guanine at the C6 position are generally unfavorable, modifications at the C8 and C2 positions yield compounds that rival guanine with respect to binding affinity. Surprisingly, C2-modified guanines such as 2-acetylguanine completely disrupt a key Watson-Crick pairing interaction between the ligand and RNA. These compounds, which also modulate transcriptional termination as efficiently as guanine, open up a significant new chemical space of guanine modifications in the search for antimicrobial agents that target purine riboswitches.
核糖开关是寻找针对 RNA 的治疗方法的重要模型系统。寻找靶向核糖开关的化合物的主要挑战是,效应配体通常几乎完全被 RNA 包裹,这严重限制了可以探索的化学空间。寻找与鸟嘌呤/腺嘌呤类核糖开关具有高亲和力的化合物的努力部分集中在 C6 和 C2 位置修饰的嘌呤上。这些研究揭示了具有低至亚微摩尔亲和力的化合物,并且在某些情况下具有抗菌活性。为了进一步了解这些化合物如何与鸟嘌呤核糖开关相互作用,我们对 C8、C6 和 C2 位置修饰的代表性鸟嘌呤衍生物进行了综合结构和功能分析。我们的数据表明,虽然 C6 位置的鸟嘌呤修饰通常是不利的,但 C8 和 C2 位置的修饰可产生与结合亲和力相比可与鸟嘌呤相媲美的化合物。令人惊讶的是,2-乙酰鸟嘌呤等 C2 修饰的鸟嘌呤完全破坏了配体和 RNA 之间的关键 Watson-Crick 配对相互作用。这些化合物与鸟嘌呤一样有效地调节转录终止,为寻找针对嘌呤核糖开关的抗菌剂开辟了一个重要的新的鸟嘌呤修饰化学空间。