Institute of Structural Biology, Helmholtz Zentrum München, Neuherberg, 85764, Germany.
Center for Integrated Protein Science Munich and Bavarian NMR Center at Department of Chemistry, Technical University of Munich, Garching, 85747, Germany.
J Mol Cell Biol. 2019 Oct 25;11(10):845-859. doi: 10.1093/jmcb/mjz086.
Following the discovery of numerous long non-coding RNA (lncRNA) transcripts in the human genome, their important roles in biology and human disease are emerging. Recent progress in experimental methods has enabled the identification of structural features of lncRNAs. However, determining high-resolution structures is challenging as lncRNAs are expected to be dynamic and adopt multiple conformations, which may be modulated by interaction with protein binding partners. The X-inactive specific transcript (Xist) is necessary for X inactivation during dosage compensation in female placental mammals and one of the best-studied lncRNAs. Recent progress has provided new insights into the domain organization, molecular features, and RNA binding proteins that interact with distinct regions of Xist. The A-repeats located at the 5' end of the transcript are of particular interest as they are essential for mediating silencing of the inactive X chromosome. Here, we discuss recent progress with elucidating structural features of the Xist lncRNA, focusing on the A-repeats. We discuss the experimental and computational approaches employed that have led to distinct structural models, likely reflecting the intrinsic dynamics of this RNA. The presence of multiple dynamic conformations may also play an important role in the formation of the associated RNPs, thus influencing the molecular mechanism underlying the biological function of the Xist A-repeats. We propose that integrative approaches that combine biochemical experiments and high-resolution structural biology in vitro with chemical probing and functional studies in vivo are required to unravel the molecular mechanisms of lncRNAs.
在人类基因组中发现大量长非编码 RNA(lncRNA)转录本后,其在生物学和人类疾病中的重要作用逐渐显现。实验方法的最新进展使人们能够识别 lncRNA 的结构特征。然而,由于 lncRNA 预计是动态的并采用多种构象,并且可能通过与蛋白质结合伴侣的相互作用进行调节,因此确定高分辨率结构具有挑战性。X 失活特异性转录本(Xist)在雌性胎盘哺乳动物的剂量补偿中对于 X 染色体失活是必需的,并且是研究得最好的 lncRNA 之一。最近的进展提供了对 Xist lncRNA 的结构域组织、分子特征以及与 Xist 不同区域相互作用的 RNA 结合蛋白的新认识。特别关注位于转录本 5'端的 A 重复序列,因为它们对于介导失活 X 染色体的沉默是必需的。在这里,我们讨论了阐明 Xist lncRNA 结构特征的最新进展,重点介绍 A 重复序列。我们讨论了所采用的实验和计算方法,这些方法导致了不同的结构模型,可能反映了这种 RNA 的固有动力学。多个动态构象的存在也可能在形成相关的 RNP 中发挥重要作用,从而影响 Xist A 重复序列的生物学功能的分子机制。我们提出,需要将体外的生化实验和高分辨率结构生物学与体内的化学探测和功能研究相结合的综合方法,以揭示 lncRNA 的分子机制。