Division of Structural and Computational Biology, School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551.
Structure. 2010 Mar 14;18(4):528-36. doi: 10.1016/j.str.2010.01.015.
Nucleosome positioning displays sequence dependency and contributes to genomic regulation in a site-specific manner. We solved the structures of nucleosome core particle composed of strong positioning TTTAA elements flanking the nucleosome center. The positioning strength of the super flexible TA dinucleotide is consistent with its observed central location within minor groove inward regions, where it can contribute maximally to energetically challenging minor groove bending, kinking and compression. The marked preference for TTTAA and positioning power of the site 1.5 double helix turns from the nucleosome center relates to a unique histone protein motif at this location, which enforces a sustained, extremely narrow minor groove via a hydrophobic "sugar clamp." Our analysis sheds light on the basis of nucleosome positioning and indicates that the histone octamer has evolved not to fully minimize sequence discrimination in DNA binding.
核小体定位显示序列依赖性,并以特定于位点的方式为基因组调控做出贡献。我们解析了由强定位 TTTAA 元件侧翼核小体中心组成的核小体核心颗粒的结构。超灵活 TA 二核苷酸的定位强度与其在小沟内向区域内的中心位置一致,在该位置,它可以最大程度地促进能量上具有挑战性的小沟弯曲、扭曲和压缩。从核小体中心开始的 1.5 圈双螺旋对 TTTAA 的明显偏好和定位能力与该位置特有的组蛋白蛋白基序有关,该基序通过疏水性“糖夹”强制维持非常狭窄的小沟。我们的分析阐明了核小体定位的基础,并表明组蛋白八聚体的进化不是为了在 DNA 结合中完全最小化序列识别。