Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania "Luigi Vanvitelli", 81100 Caserta, Italy.
Int J Mol Sci. 2023 May 17;24(10):8886. doi: 10.3390/ijms24108886.
Transcriptome complexity is emerging as an unprecedented and fascinating domain, especially by high-throughput sequencing technologies that have unveiled a plethora of new non-coding RNA biotypes. This review covers antisense long non-coding RNAs, i.e., lncRNAs transcribed from the opposite strand of other known genes, and their role in hepatocellular carcinoma (HCC). Several sense-antisense transcript pairs have been recently annotated, especially from mammalian genomes, and an understanding of their evolutionary sense and functional role for human health and diseases is only beginning. Antisense lncRNAs dysregulation is significantly involved in hepatocarcinogenesis, where they can act as oncogenes or oncosuppressors, thus playing a key role in tumor onset, progression, and chemoradiotherapy response, as deduced from many studies discussed here. Mechanistically, antisense lncRNAs regulate gene expression by exploiting various molecular mechanisms shared with other ncRNA molecules, and exploit special mechanisms on their corresponding sense gene due to sequence complementarity, thus exerting epigenetic, transcriptional, post-transcriptional, and translational controls. The next challenges will be piecing together the complex RNA regulatory networks driven by antisense lncRNAs and, ultimately, assigning them a function in physiological and pathological contexts, in addition to defining prospective novel therapeutic targets and innovative diagnostic tools.
转录组复杂性正在成为一个前所未有的迷人领域,特别是高通量测序技术揭示了大量新的非编码 RNA 生物类型。本篇综述涵盖了反义长链非编码 RNA(lncRNA),即从其他已知基因的反向链转录而来的 lncRNA,以及它们在肝细胞癌(HCC)中的作用。最近已经注释了几个 sense-antisense 转录对,特别是来自哺乳动物基因组的转录对,并且人们才刚刚开始理解它们在人类健康和疾病中的进化意义和功能作用。反义 lncRNA 的失调显著参与了肝癌的发生,它们可以作为癌基因或抑癌基因发挥作用,因此在肿瘤的发生、进展和放化疗反应中起着关键作用,这可以从这里讨论的许多研究中推断出来。从机制上讲,反义 lncRNA 通过利用与其他 ncRNA 分子共享的各种分子机制来调节基因表达,并由于序列互补性而利用其相应的 sense 基因的特殊机制,从而发挥表观遗传、转录、转录后和翻译控制。接下来的挑战将是拼凑由反义 lncRNA 驱动的复杂 RNA 调控网络,并最终在生理和病理环境中为它们分配功能,除了确定有前景的新型治疗靶点和创新的诊断工具。