Sekar Shobana, Liang Winnie S
Translational Genomics Research Institute, Phoenix, AZ, USA.
Noncoding RNA Res. 2019 Jan 5;4(1):23-29. doi: 10.1016/j.ncrna.2019.01.001. eCollection 2019 Mar.
Within the last decade, active research on circular RNAs (circRNAs) has dramatically improved our understanding of the expression and function of these non-coding RNAs. While several mechanisms for circRNA function have been proposed, including sequestration of microRNAs and regulation of cellular proteins, studies provide evidence that circRNAs can regulate transcription and may also serve as biomarkers. Due to the heterogeneous nature of the brain, and the dynamic transcriptional mechanisms that support neurobiological pathways, the influence of circRNAs is potentially extensive. Understanding how circRNAs contribute to key neurological pathways will fill gaps in our understanding of brain function and provide valuable insight into novel therapeutic approaches to treat neurological diseases. Here, we review recent research on circRNA expression in the brain, describe the proposed functions of circRNAs, and evaluate the role of circRNAs in neurological diseases.
在过去十年中,对环状RNA(circRNA)的积极研究极大地增进了我们对这些非编码RNA的表达和功能的理解。虽然已经提出了几种circRNA功能的机制,包括对微小RNA的隔离和对细胞蛋白质的调节,但研究表明circRNA可以调节转录,并且还可能作为生物标志物。由于大脑的异质性以及支持神经生物学途径的动态转录机制,circRNA的影响可能是广泛的。了解circRNA如何对关键神经通路产生影响,将填补我们对脑功能理解的空白,并为治疗神经疾病的新疗法提供有价值的见解。在这里,我们综述了关于大脑中circRNA表达的最新研究,描述了circRNA的假定功能,并评估了circRNA在神经疾病中的作用。