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非典型 RNA 在动脉粥样硬化中的新兴功能领域。

The emerging landscape of non-conventional RNA functions in atherosclerosis.

机构信息

Institute for Cardiovascular Prevention (IPEK), Ludwig-Maximillians-Universität (LMU), Munich, Germany; German Center for Cardiovascular Research (DZHK), Partner Site Munich Heart Alliance, Munich, Germany.

Institute for Cardiovascular Prevention (IPEK), Ludwig-Maximillians-Universität (LMU), Munich, Germany; German Center for Cardiovascular Research (DZHK), Partner Site Munich Heart Alliance, Munich, Germany; Department of Biochemistry, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, Maastricht, the Netherlands; Munich Cluster for Systems Neurology (SyNergy), Munich, Germany.

出版信息

Atherosclerosis. 2023 Jun;374:74-86. doi: 10.1016/j.atherosclerosis.2023.01.009. Epub 2023 Jan 20.

Abstract

Most of the human genome is transcribed into non-coding RNAs (ncRNAs), which encompass a heterogeneous family of transcripts including microRNAs (miRNAs), long ncRNAs (lncRNAs), circular RNAs (circRNAs), and others. Although the detailed modes of action of some classes are not fully elucidated, the common notion is that ncRNAs contribute to sculpting gene expression of eukaryotic cells at multiple levels. These range from the regulation of chromatin remodeling and transcriptional activity to post-transcriptional regulation of messenger RNA splicing, stability, and decay. Many of these functions ultimately govern the expression of coding and non-coding genes to affect diverse physiological and pathological mechanisms in vascular biology and beyond. As such, different classes of ncRNAs emerged as crucial regulators of vascular integrity as well as active players in the pathophysiology of atherosclerosis from the early stages of endothelial dysfunction to the clinically relevant complications. However, research in recent years revealed unexpected findings such as small ncRNAs being able to biophysically regulate protein function, the glycosylation of ncRNAs to be exposed on the cell surface, the release of ncRNAs in the extracellular space to act as ligands of receptors, and even the ability of non-coding portion of messenger RNAs to mediate structural functions. This evidence expanded the functional repertoire of ncRNAs far beyond gene regulation and highlighted an additional layer of biological control of cell function. In this Review, we will discuss these emerging aspects of ncRNA biology, highlight the implications for the mechanisms of vascular biology and atherosclerosis, and discuss possible translational implications.

摘要

大多数人类基因组都被转录为非编码 RNA(ncRNA),ncRNA 包含了多种转录本,包括 microRNAs(miRNAs)、长链非编码 RNA(lncRNA)、环状 RNA(circRNA)等。虽然某些类别的确切作用机制尚未完全阐明,但普遍的观点是,ncRNA 通过多个层面参与塑造真核细胞的基因表达。这些层面包括染色质重塑和转录活性的调节,以及信使 RNA 剪接、稳定性和降解的转录后调节。这些功能中的许多最终控制着编码和非编码基因的表达,从而影响血管生物学及其他领域的多种生理和病理机制。因此,不同类别的 ncRNA 已成为血管完整性的关键调节剂,也是动脉粥样硬化从内皮功能障碍早期到临床相关并发症的病理生理过程中的活跃参与者。然而,近年来的研究揭示了一些意外的发现,例如小 ncRNA 能够在生物物理上调节蛋白质功能、ncRNA 的糖基化会暴露在细胞表面、ncRNA 在细胞外空间释放以作为受体配体发挥作用,甚至信使 RNA 的非编码部分能够介导结构功能。这些证据大大扩展了 ncRNA 的功能范围,远远超出了基因调控的范畴,并突出了细胞功能的另一个生物控制层面。在这篇综述中,我们将讨论 ncRNA 生物学的这些新出现的方面,强调它们对血管生物学和动脉粥样硬化机制的意义,并讨论可能的转化意义。

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