Department of Biological Sciences, Mississippi State University, Mississippi State, MS 39762, USA.
Cells. 2020 May 17;9(5):1240. doi: 10.3390/cells9051240.
Heart disease remains the leading cause of death globally and leads to tremendous socio-economic burden. Despite advances in the field of cardiovascular research, novel theranostics are still in urgent need. Remarkable progress has been made in understanding aberrant protein interactions and signaling pathways in the diseased heart, but less is known regarding epigenetic regulation. Non-coding RNAs have emerged as important regulators of cardiac function and have been implicated in disease. While significant progress has been made in understanding the roles of microRNAs and long non-coding RNAs, the functional roles of circular RNAs are less explored. Recent studies have provided ample evidence supporting their roles in multiple physiological processes including regulating the function of the heart. Compared with other RNAs, circular RNAs exhibit higher stability and more versatile functional modes: including sponging microRNAs, scaffolding proteins, regulating transcription, and even encoding small regulatory peptides. These characteristics make circular RNAs promising candidates for the development of diagnostic tools and therapies for heart disease. In this review, we will discuss the biogenesis of circular RNAs and provide an update of their functional implications in heart disease, with an emphasis on heart failure and arrhythmias.
心脏病仍然是全球死亡的主要原因,给社会经济带来了巨大的负担。尽管心血管研究领域取得了进展,但仍急需新的治疗方法。在理解患病心脏中的异常蛋白质相互作用和信号通路方面已经取得了显著进展,但对表观遗传调控的了解较少。非编码 RNA 已成为心脏功能的重要调节因子,并与疾病有关。虽然在理解 microRNAs 和长非编码 RNA 的作用方面已经取得了重大进展,但环状 RNA 的功能作用仍未得到充分探索。最近的研究提供了充分的证据,支持它们在多种生理过程中的作用,包括调节心脏功能。与其他 RNA 相比,环状 RNA 具有更高的稳定性和更多样化的功能模式:包括海绵 microRNAs、支架蛋白、调节转录,甚至编码小的调节肽。这些特征使环状 RNA 成为开发心脏病诊断工具和治疗方法的有前途的候选物。在这篇综述中,我们将讨论环状 RNA 的生物发生,并提供其在心脏病中的功能意义的最新进展,重点是心力衰竭和心律失常。