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人类非编码转录组中 G-四链体结构的生物学相关性和治疗潜力。

Biological relevance and therapeutic potential of G-quadruplex structures in the human noncoding transcriptome.

机构信息

Department of Biosciences, University of Milan, via G. Celoria 26, 20133 Milano, Italy.

Department of Molecular Medicine, University of Padua, via A. Gabelli 63, 35121 Padova, Italy.

出版信息

Nucleic Acids Res. 2021 Apr 19;49(7):3617-3633. doi: 10.1093/nar/gkab127.

Abstract

Noncoding RNAs are functional transcripts that are not translated into proteins. They represent the largest portion of the human transcriptome and have been shown to regulate gene expression networks in both physiological and pathological cell conditions. Research in this field has made remarkable progress in the comprehension of how aberrations in noncoding RNA drive relevant disease-associated phenotypes; however, the biological role and mechanism of action of several noncoding RNAs still need full understanding. Besides fulfilling its function through sequence-based mechanisms, RNA can form complex secondary and tertiary structures which allow non-canonical interactions with proteins and/or other nucleic acids. In this context, the presence of G-quadruplexes in microRNAs and long noncoding RNAs is increasingly being reported. This evidence suggests a role for RNA G-quadruplexes in controlling microRNA biogenesis and mediating noncoding RNA interaction with biological partners, thus ultimately regulating gene expression. Here, we review the state of the art of G-quadruplexes in the noncoding transcriptome, with their structural and functional characterization. In light of the existence and further possible development of G-quadruplex binders that modulate G-quadruplex conformation and protein interactions, we also discuss the therapeutic potential of G-quadruplexes as targets to interfere with disease-associated noncoding RNAs.

摘要

非编码 RNA 是具有功能的转录本,不能翻译成蛋白质。它们构成了人类转录组的最大部分,并且已经表明它们可以调节生理和病理细胞条件下的基因表达网络。该领域的研究在理解非编码 RNA 突变如何驱动相关疾病相关表型方面取得了显著进展;然而,几种非编码 RNA 的生物学功能和作用机制仍需要全面了解。除了通过基于序列的机制发挥作用外,RNA 还可以形成复杂的二级和三级结构,允许与蛋白质和/或其他核酸进行非规范相互作用。在这种情况下,越来越多的证据表明 microRNA 和长非编码 RNA 中存在 G-四链体。这一证据表明,RNA G-四链体在控制 microRNA 生物发生和介导非编码 RNA 与生物伙伴相互作用方面发挥作用,从而最终调节基因表达。在这里,我们回顾了非编码转录组中 G-四链体的最新研究进展,包括其结构和功能特征。鉴于存在并可能进一步开发调节 G-四链体构象和蛋白质相互作用的 G-四链体结合物,我们还讨论了将 G-四链体作为靶标来干扰与疾病相关的非编码 RNA 的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7267/8053107/4f20de700a86/gkab127fig1.jpg

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