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临床相关的硫代磷酸酯 mRNA 帽类似物与翻译起始因子 4E 相互作用的结构见解揭示了通过静电硫醚效应的稳定化。

Structural Insights into the Interaction of Clinically Relevant Phosphorothioate mRNA Cap Analogs with Translation Initiation Factor 4E Reveal Stabilization via Electrostatic Thio-Effect.

机构信息

Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Pasteura 5, 02-093 Warsaw, Poland.

Laboratory of Protein Structure, International Institute of Molecular and Cell Biology, Ksiecia Trojdena 4, 02-109 Warsaw, Poland.

出版信息

ACS Chem Biol. 2021 Feb 19;16(2):334-343. doi: 10.1021/acschembio.0c00864. Epub 2021 Jan 13.

Abstract

mRNA-based therapies and vaccines constitute a disruptive technology with the potential to revolutionize modern medicine. Chemically modified 5' cap structures have provided access to mRNAs with superior translational properties that could benefit the currently flourishing mRNA field. Prime examples of compounds that enhance mRNA properties are antireverse cap analog diastereomers that contain an O-to-S substitution within the β-phosphate (β-S-ARCA D1 and D2), where D1 is used in clinically investigated mRNA vaccines. The compounds were previously found to have high affinity for eukaryotic translation initiation factor 4E (eIF4E) and augment translation and . However, the molecular basis for the beneficial "thio-effect" remains unclear. Here, we employed multiple biophysical techniques and captured 11 cap analog-eIF4E crystallographic structures to investigate the consequences of the β-O-to-S or -Se substitution on the interaction with eIF4E. We determined the / configurations of β-S-ARCA and related compounds and obtained structural insights into the binding. Unexpectedly, in both stereoisomers, the β-S/Se atom occupies the same binding cavity between Lys162 and Arg157, indicating that the key driving force for complex stabilization is the interaction of negatively charged S/Se with positively charged amino acids. This was observed for all structural variants of the cap and required significantly different conformations of the triphosphate for each diastereomer. This finding explains why both β-S-ARCA diastereomers have higher affinity for eIF4E than unmodified caps. Binding affinities determined for di-, tri-, and oligonucleotide cap analogs suggested that the "thio-effect" was preserved in longer RNAs. Our observations broaden the understanding of thiophosphate biochemistry and enable the rational design of translationally active mRNAs and eIF4E-targeting drugs.

摘要

mRNA 疗法和疫苗是一种具有颠覆性的技术,有可能彻底改变现代医学。经过化学修饰的 5' 帽结构使具有优越翻译性质的 mRNA 得以实现,这可能会使目前蓬勃发展的 mRNA 领域受益。能够提高 mRNA 性质的化合物的典型例子是包含β-磷酸酯内 O 到 S 取代的反式帽类似物非对映异构体(β-S-ARCA D1 和 D2),其中 D1 用于正在临床研究的 mRNA 疫苗中。这些化合物以前被发现对真核翻译起始因子 4E(eIF4E)具有高亲和力,并增强翻译 和 。然而,有益的“硫效应”的分子基础仍不清楚。在这里,我们采用了多种生物物理技术,并捕获了 11 个帽类似物-eIF4E 晶体结构,以研究β-O 到 S 或 -Se 取代对与 eIF4E 相互作用的影响。我们确定了 β-S-ARCA 和相关化合物的 / 构型,并获得了结合的结构见解。出乎意料的是,在两种立体异构体中,β-S/Se 原子占据 Lys162 和 Arg157 之间相同的结合腔,这表明复合物稳定的关键驱动力是带负电荷的 S/Se 与带正电荷的氨基酸之间的相互作用。这在帽的所有结构变体中都观察到,并且每个非对映异构体都需要三磷酸酯的显著不同构象。这一发现解释了为什么两种 β-S-ARCA 非对映异构体对 eIF4E 的亲和力都高于未修饰的帽。对二核苷酸、三核苷酸和寡核苷酸帽类似物的结合亲和力的测定表明,“硫效应”在较长的 RNA 中得以保留。我们的观察结果拓宽了对硫代磷酸盐生物化学的理解,并能够合理设计具有翻译活性的 mRNA 和靶向 eIF4E 的药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e303/7901015/d0d7bfc58abd/cb0c00864_0001.jpg

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