Trinucleotide cap analogs with triphosphate chain modifications: synthesis, properties, and evaluation as mRNA capping reagents.

IF 16.6 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Nucleic Acids Research Pub Date : 2024-09-09 DOI:10.1093/nar/gkae763
Marcin Warminski, Anais Depaix, Kamil Ziemkiewicz, Tomasz Spiewla, Joanna Zuberek, Karolina Drazkowska, Hanna Kedzierska, Agnieszka Popielec, Marek R Baranowski, Marta Sklucka, Marcelina Bednarczyk, Miroslaw Smietanski, Karol Wolosewicz, Bartosz Majewski, Remigiusz A Serwa, Dominika Nowis, Jakub Golab, Joanna Kowalska, Jacek Jemielity
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Abstract

The recent COVID-19 pandemics have demonstrated the great therapeutic potential of in vitro transcribed (IVT) mRNAs, but improvements in their biochemical properties, such as cellular stability, reactogenicity and translational activity, are critical for further practical applications in gene replacement therapy and anticancer immunotherapy. One of the strategies to overcome these limitations is the chemical modification of a unique mRNA 5'-end structure, the 5'-cap, which is responsible for regulating translation at multiple levels. This could be achieved by priming the in vitro transcription reaction with synthetic cap analogs. In this study, we combined a highly efficient trinucleotide IVT capping technology with several modifications of the 5' cap triphosphate bridge to synthesize a series of 16 new cap analogs. We also combined these modifications with epigenetic marks (2'-O-methylation and m6Am) characteristic of mRNA 5'-ends in higher eukaryotes, which was not possible with dinucleotide caps. All analogs were compared for their effect on the interactions with eIF4E protein, IVT priming, susceptibility to decapping, and mRNA translation efficiency in model cell lines. The most promising α-phosphorothiolate modification was also evaluated in an in vivo mouse model. Unexpected differences between some of the analogs were analyzed using a protein cell extract pull-down assay.

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具有三磷酸链修饰的三核苷酸帽类似物:作为 mRNA 封顶试剂的合成、特性和评估。
最近的 COVID-19 大流行证明了体外转录(IVT)mRNA 的巨大治疗潜力,但要进一步实际应用于基因替代疗法和抗癌免疫疗法,改善其生化特性(如细胞稳定性、反应活性和翻译活性)至关重要。克服这些限制的策略之一是对 mRNA 独特的 5'- 末端结构(5'-cap)进行化学修饰,该结构负责在多个水平上调节翻译。这可以通过用合成帽类似物引发体外转录反应来实现。在这项研究中,我们将高效的三核苷酸 IVT 加盖技术与 5' cap 三磷酸桥的几种修饰相结合,合成了一系列 16 种新的 cap 类似物。我们还将这些修饰与高等真核生物中 mRNA 5'-end 特有的表观遗传标记(2'-O-甲基化和 m6Am)结合起来,这在二核苷酸帽中是不可能实现的。我们比较了所有类似物对模型细胞系中与 eIF4E 蛋白的相互作用、IVT 引物、脱帽敏感性和 mRNA 翻译效率的影响。此外,还在小鼠体内模型中评估了最有前景的α-硫代磷酸酯修饰。使用蛋白质细胞提取物牵引试验分析了一些类似物之间的意外差异。
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来源期刊
Nucleic Acids Research
Nucleic Acids Research 生物-生化与分子生物学
CiteScore
27.10
自引率
4.70%
发文量
1057
审稿时长
2 months
期刊介绍: Nucleic Acids Research (NAR) is a scientific journal that publishes research on various aspects of nucleic acids and proteins involved in nucleic acid metabolism and interactions. It covers areas such as chemistry and synthetic biology, computational biology, gene regulation, chromatin and epigenetics, genome integrity, repair and replication, genomics, molecular biology, nucleic acid enzymes, RNA, and structural biology. The journal also includes a Survey and Summary section for brief reviews. Additionally, each year, the first issue is dedicated to biological databases, and an issue in July focuses on web-based software resources for the biological community. Nucleic Acids Research is indexed by several services including Abstracts on Hygiene and Communicable Diseases, Animal Breeding Abstracts, Agricultural Engineering Abstracts, Agbiotech News and Information, BIOSIS Previews, CAB Abstracts, and EMBASE.
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