Weissenboeck Florian P, Klöcker Nils, Špaček Petr, Hüwel Sabine, Rentmeister Andrea
Institute of Biochemistry, University of Münster, Münster 48149, Germany.
ACS Omega. 2024 Mar 8;9(11):12810-12816. doi: 10.1021/acsomega.3c08505. eCollection 2024 Mar 19.
The 5' cap is a distinguishing feature of transcripts made by polymerase II and characterized by an N7-methylated guanosine (mG) linked to the first transcribed nucleotide by a 5'-5' triphosphate bridge. It stabilizes eukaryotic mRNAs and plays a crucial role in translation initiation. Its importance in mRNA processing, translation, and turnover makes the 5' cap a privileged structure for engineering by non-natural modifications. A photocleavable group at the 5' cap of guanosine was recently used to mute translation of exogenous mRNAs. Its removal by light enabled direct control of protein production at the posttranscriptional level. Modifications in the triphosphate bridge impede degradation by specific decapping enzymes and maintain translation. Here, we combined 5' cap modifications at different positions and investigated how they impact 5' cap-dependent processes in distinct manners. We synthesized 5' cap analogues with a photocleavable group at the N-position of mG in addition to a medronate in the triphosphate bridge to obtain a photoactivatable 5' cap analogue featuring a methylene group between the β and γ phosphates. The resulting Medronate-FlashCap transiently or permanently impeded distinct crucial interactions of the 5' cap required for translation and degradation. We show that the Medronate-FlashCap is compatible with in vitro transcription to generate muted mRNA and that light can be used to activate translation in cells. After light-induced removal of the photocleavable group, the Medronate-FlashCap remained stable against degradation by the decapping enzyme DcpS. The additional methylene group renders the 5' cap resistant to DcpS, while maintaining the interaction with cap-binding proteins.
5' 帽是聚合酶 II 转录产物的一个显著特征,其特点是一个 N7-甲基化鸟苷(mG)通过 5'-5' 三磷酸桥与第一个转录的核苷酸相连。它稳定真核 mRNA,并在翻译起始中起关键作用。其在 mRNA 加工、翻译和周转中的重要性使得 5' 帽成为通过非天然修饰进行工程改造的特殊结构。最近,鸟苷 5' 帽处的一个可光裂解基团被用于抑制外源 mRNA 的翻译。通过光照去除该基团能够在转录后水平直接控制蛋白质的产生。三磷酸桥中的修饰会阻碍特定去帽酶的降解作用并维持翻译。在此,我们将不同位置的 5' 帽修饰结合起来,研究它们如何以不同方式影响 5' 帽依赖性过程。我们合成了 5' 帽类似物,除了在三磷酸桥中有一个亚甲基膦酸酯外,在 mG 的 N 位还有一个可光裂解基团,以获得一种在 β 和 γ 磷酸之间具有亚甲基的光激活 5' 帽类似物。所得的亚甲基膦酸酯 - 闪光帽(Medronate-FlashCap)暂时或永久地阻碍了翻译和降解所需的 5' 帽的不同关键相互作用。我们表明亚甲基膦酸酯 - 闪光帽与体外转录兼容以产生沉默的 mRNA,并且光可用于激活细胞中的翻译。在光诱导去除可光裂解基团后,亚甲基膦酸酯 - 闪光帽对去帽酶 DcpS 的降解保持稳定。额外的亚甲基使 5' 帽对 DcpS 具有抗性,同时维持与帽结合蛋白的相互作用。