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mRNA 可变多聚腺苷酸化的语境特异性调控和功能。

Context-specific regulation and function of mRNA alternative polyadenylation.

机构信息

Cancer Biology and Genetics Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

出版信息

Nat Rev Mol Cell Biol. 2022 Dec;23(12):779-796. doi: 10.1038/s41580-022-00507-5. Epub 2022 Jul 7.

Abstract

Alternative cleavage and polyadenylation (APA) is a widespread mechanism to generate mRNA isoforms with alternative 3' untranslated regions (UTRs). The expression of alternative 3' UTR isoforms is highly cell type specific and is further controlled in a gene-specific manner by environmental cues. In this Review, we discuss how the dynamic, fine-grained regulation of APA is accomplished by several mechanisms, including cis-regulatory elements in RNA and DNA and factors that control transcription, pre-mRNA cleavage and post-transcriptional processes. Furthermore, signalling pathways modulate the activity of these factors and integrate APA into gene regulatory programmes. Dysregulation of APA can reprogramme the outcome of signalling pathways and thus can control cellular responses to environmental changes. In addition to the regulation of protein abundance, APA has emerged as a major regulator of mRNA localization and the spatial organization of protein synthesis. This role enables the regulation of protein function through the addition of post-translational modifications or the formation of protein-protein interactions. We further discuss recent transformative advances in single-cell RNA sequencing and CRISPR-Cas technologies, which enable the mapping and functional characterization of alternative 3' UTRs in any biological context. Finally, we discuss new APA-based RNA therapeutics, including compounds that target APA in cancer and therapeutic genome editing of degenerative diseases.

摘要

可变剪接和多聚腺苷酸化 (APA) 是产生具有不同 3'非翻译区 (UTR) 的 mRNA 异构体的广泛机制。替代 3'UTR 异构体的表达具有高度的细胞类型特异性,并进一步通过环境线索以基因特异性的方式受到控制。在这篇综述中,我们讨论了几种机制如何实现 APA 的动态、细粒度调节,包括 RNA 和 DNA 中的顺式调节元件以及控制转录、前体 mRNA 切割和转录后过程的因素。此外,信号通路调节这些因子的活性,并将 APA 整合到基因调控程序中。APA 的失调可以重新编程信号通路的结果,从而可以控制细胞对环境变化的反应。除了对蛋白质丰度的调节外,APA 已成为 mRNA 定位和蛋白质合成空间组织的主要调节剂。这种作用通过添加翻译后修饰或形成蛋白质-蛋白质相互作用来调节蛋白质功能。我们还进一步讨论了单细胞 RNA 测序和 CRISPR-Cas 技术的最新变革性进展,这些技术使在任何生物学背景下对替代 3'UTR 进行映射和功能表征成为可能。最后,我们讨论了基于 APA 的新型 RNA 治疗方法,包括针对癌症中的 APA 和退行性疾病的治疗性基因组编辑的化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0187/9261900/d19432bb8df2/41580_2022_507_Fig1_HTML.jpg

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