Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Ramat Aviv, Israel.
EMBO J. 2010 May 19;29(10):1629-36. doi: 10.1038/emboj.2010.71. Epub 2010 Apr 20.
How are short exonic sequences recognized within the vast intronic oceans in which they reside? Despite decades of research, this remains one of the most fundamental, yet enigmatic, questions in the field of pre-mRNA splicing research. For many years, studies aiming to shed light on this process were focused at the RNA level, characterizing the manner by which splicing factors and auxiliary proteins interact with splicing signals, thereby enabling, facilitating and regulating splicing. However, we increasingly understand that splicing is not an isolated process; rather it occurs co-transcriptionally and is presumably also regulated by transcription-related processes. In fact, studies by our group and others over the past year suggest that DNA structure in terms of nucleosome positioning and specific histone modifications, which have a well established role in transcription, may also have a role in splicing. In this review we discuss evidence for the coupling between transcription and splicing, focusing on recent findings suggesting a link between chromatin structure and splicing, and highlighting challenges this emerging field is facing.
在它们所在的巨大内含子海洋中,短外显子序列是如何被识别的?尽管经过了几十年的研究,这仍然是 pre-mRNA 剪接研究领域中最基本但也是最神秘的问题之一。多年来,旨在阐明这一过程的研究集中在 RNA 水平上,描述了剪接因子和辅助蛋白与剪接信号相互作用的方式,从而使剪接得以进行、促进和调节。然而,我们越来越理解到,剪接不是一个孤立的过程;相反,它是在转录过程中发生的,并且可能还受到与转录相关的过程的调节。事实上,过去一年中我们小组和其他小组的研究表明,就核小体定位和特定组蛋白修饰而言的 DNA 结构在转录中具有明确的作用,也可能在剪接中发挥作用。在这篇综述中,我们讨论了转录和剪接之间的偶联的证据,重点介绍了最近的发现,这些发现表明染色质结构与剪接之间存在联系,并强调了这个新兴领域所面临的挑战。