Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Pasteura 5, Warsaw, 02-093, Poland.
Doctoral School of Exact and Natural Sciences, University of Warsaw, Zwirki i Wigury 93, Warsaw, 02-089, Poland.
Adv Sci (Weinh). 2024 Sep;11(36):e2400994. doi: 10.1002/advs.202400994. Epub 2024 Jul 24.
Chemical modification of messenger RNA (mRNA) has paved the way for advancing mRNA-based therapeutics. The intricate process of mRNA translation in eukaryotes is orchestrated by numerous proteins involved in complex interaction networks. Many of them bind specifically to a unique structure at the mRNA 5'-end, called 5'-cap. Depending on the 5'-terminal sequence and its methylation pattern, different proteins may be involved in the translation initiation and regulation, but a deeper understanding of these mechanisms requires specialized molecular tools to identify natural binders of mRNA 5'-end variants. Here, a series of 8 new synthetic 5'-cap analogs that allow the preparation of RNA molecules with photoreactive tags using a standard in vitro transcription reaction are reported. Two photoreactive tags and four different modification sites are selected to minimize potential interference with cap-protein contacts and to provide complementary properties regarding crosslinking chemistry and molecular interactions. The tailored modification strategy allows for the generation of specific crosslinks with model cap-binding proteins, such as eIF4E and Dcp2. The usefulness of the photoreactive cap analogs is also demonstrated for identifying the cap-binding subunit in a multi-protein complex, which makes them perfect candidates for further development of photoaffinity labeling probes to study more complex mRNA-related processes.
mRNA 的化学修饰为推进基于 mRNA 的治疗方法铺平了道路。真核生物中 mRNA 翻译的复杂过程是由许多参与复杂相互作用网络的蛋白质协调的。其中许多蛋白质特异性地结合到 mRNA 5' 端的一个独特结构上,称为 5' 帽。根据 5' 末端序列及其甲基化模式,不同的蛋白质可能参与翻译起始和调节,但要更深入地了解这些机制,需要专门的分子工具来识别 mRNA 5' 端变体的天然结合蛋白。在这里,报道了一系列 8 种新的合成 5' 帽类似物,它们允许使用标准的体外转录反应制备带有光反应性标记的 RNA 分子。选择了两种光反应性标记和四个不同的修饰位点,以最小化潜在的与帽蛋白接触的干扰,并提供关于交联化学和分子相互作用的互补特性。定制的修饰策略允许与模型帽结合蛋白(如 eIF4E 和 Dcp2)生成特异性交联。光反应性帽类似物对于鉴定多蛋白复合物中的帽结合亚基也很有用,这使它们成为进一步开发用于研究更复杂的 mRNA 相关过程的光亲和标记探针的理想候选物。