Unspinning chromatin: Revealing the dynamic nucleosome landscape by NMR

IF 7.3 2区 化学 Q2 CHEMISTRY, PHYSICAL Progress in Nuclear Magnetic Resonance Spectroscopy Pub Date : 2019-02-01 DOI:10.1016/j.pnmrs.2019.01.002
Clara L. van Emmerik, Hugo van Ingen
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引用次数: 23

Abstract

NMR is an essential technique for obtaining information at atomic resolution on the structure, motions and interactions of biomolecules. Here, we review the contribution of NMR to our understanding of the fundamental unit of chromatin: the nucleosome. Nucleosomes compact the genome by wrapping the DNA around a protein core, the histone octamer, thereby protecting genomic integrity. Crucially, the imposed barrier also allows strict regulation of gene expression, DNA replication and DNA repair processes through an intricate system of histone and DNA modifications and a wide range of interactions between nucleosomes and chromatin factors. In this review, we describe how NMR has contributed to deciphering the molecular basis of nucleosome function. Starting from pioneering studies in the 1960s using natural abundance NMR studies, we focus on the progress in sample preparation and NMR methodology that has allowed high-resolution studies on the nucleosome and its subunits. We summarize the results and approaches of state-of-the-art NMR studies on nucleosomal DNA, histone complexes, nucleosomes and nucleosomal arrays. These studies highlight the particular strength of NMR in studying nucleosome dynamics and nucleosome-protein interactions. Finally, we look ahead to exciting new possibilities that will be afforded by on-going developments in solution and solid-state NMR. By increasing both the depth and breadth of nucleosome NMR studies, it will be possible to offer a unique perspective on the dynamic landscape of nucleosomes and its interacting proteins.

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解旋染色质:核磁共振揭示动态核小体景观
核磁共振是在原子分辨率上获取生物分子结构、运动和相互作用信息的重要技术。在这里,我们回顾核磁共振对我们理解染色质的基本单位:核小体的贡献。核小体通过将DNA包裹在蛋白质核心(组蛋白八聚体)周围来压缩基因组,从而保护基因组的完整性。至关重要的是,通过复杂的组蛋白和DNA修饰系统以及核小体和染色质因子之间的广泛相互作用,施加的屏障还允许严格调节基因表达、DNA复制和DNA修复过程。在这篇综述中,我们描述了核磁共振如何有助于破译核小体功能的分子基础。从20世纪60年代使用天然丰度核磁共振研究的开创性研究开始,我们专注于样品制备和核磁共振方法的进展,这些方法已经允许对核小体及其亚基进行高分辨率研究。我们总结了核小体DNA、组蛋白复合物、核小体和核小体阵列的最新核磁共振研究结果和方法。这些研究突出了核磁共振在研究核小体动力学和核小体-蛋白相互作用方面的特殊优势。最后,我们展望了溶液和固态核磁共振的持续发展所带来的令人兴奋的新可能性。通过增加核小体核磁共振研究的深度和广度,将有可能为核小体及其相互作用蛋白质的动态景观提供独特的视角。
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来源期刊
CiteScore
14.30
自引率
8.20%
发文量
12
审稿时长
62 days
期刊介绍: Progress in Nuclear Magnetic Resonance Spectroscopy publishes review papers describing research related to the theory and application of NMR spectroscopy. This technique is widely applied in chemistry, physics, biochemistry and materials science, and also in many areas of biology and medicine. The journal publishes review articles covering applications in all of these and in related subjects, as well as in-depth treatments of the fundamental theory of and instrumental developments in NMR spectroscopy.
期刊最新文献
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