Institute for Cardiovascular Regeneration, Goethe University, Frankfurt am Main 60590, Germany.
Institute for Cardiovascular Regeneration, Goethe University, Frankfurt am Main 60590, Germany.
Vascul Pharmacol. 2019 Mar;114:13-22. doi: 10.1016/j.vph.2018.03.003.
The advent of deep sequencing technologies recently unraveled the complexity of the human genome: Although almost entirely transcribed, only a very minor part of our genome actually accounts for protein coding exons and most is considered non-coding. Among the non-coding transcripts, long non-coding RNAs (lncRNAs) constitute a rather heterogeneous group of linear as well as circular RNAs (circRNAs). LncRNAs act via multiple mechanisms and several lncRNAs were shown to be involved in vascular development, growth and remodeling. For example, the lncRNAs PUNISHER, MALAT1, MEG3, and GATA6-AS regulate vessel formation in vivo, whereas lincRNA-p21 controls smooth muscle cell function and neointima formation. For several other lncRNAs (e.g. SENCR, SMILR, and HypERlnc) functional roles in smooth muscle cells/pericytes have been described in vitro. Less information is available with respect to the function of circRNAs. Here most studies report on expression profiles but some circRNAs (e.g. cANRIL or cZNF292) may also play critical roles in smooth muscle or endothelial cells in vitro. This review summarizes the current knowledge of lncRNA and circRNA functions in vascular biology and disease and discusses their potential use as biomarkers.
近年来,深度测序技术的出现揭示了人类基因组的复杂性:尽管几乎完全转录,但我们基因组的一小部分实际上编码蛋白质外显子,而大部分被认为是非编码的。在非编码转录本中,长非编码 RNA(lncRNA)构成了一个相当异质的线性和环状 RNA(circRNA)群体。lncRNA 通过多种机制发挥作用,一些 lncRNA 被证明参与血管发育、生长和重塑。例如,lncRNA PUNISHER、MALAT1、MEG3 和 GATA6-AS 在体内调节血管形成,而 lincRNA-p21 控制平滑肌细胞功能和新生内膜形成。对于其他一些 lncRNA(例如 SENCR、SMILR 和 HypERlnc),在体外已经描述了它们在平滑肌细胞/周细胞中的功能作用。关于 circRNA 的功能,我们的了解较少。这里大多数研究报告了表达谱,但一些 circRNA(例如 cANRIL 或 cZNF292)也可能在体外的平滑肌细胞或内皮细胞中发挥关键作用。这篇综述总结了 lncRNA 和 circRNA 在血管生物学和疾病中的功能的最新知识,并讨论了它们作为生物标志物的潜在用途。