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

生物 转录组 非编码RNA 小RNA 核糖核酸 长非编码RNA 生物发生 计算生物学 小核仁RNA 遗传学 基因 背景(考古学) 基因表达 古生物学
作者
Martina Tassinari,Sara N. Richter,Paolo Gandellini
出处
期刊:Nucleic Acids Research [Oxford University Press]
卷期号:49 (7): 3617-3633 被引量:62
标识
DOI:10.1093/nar/gkab127
摘要

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.

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