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Nucleosome distribution and linker DNA: connecting nuclear function to dynamic chromatin structure.

机译:核小体分布和接头DNA:将核功能连接到动态染色质结构。

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Genetic information in eukaryotes is managed by strategic hierarchical organization of chromatin structure. Primary chromatin structure describes an unfolded nucleosomal array, often referred to as "beads on a string". Chromatin is compacted by the nonlinear rearrangement of nucleosomes to form stable secondary chromatin structures. Chromatin conformational transitions between primary and secondary structures are mediated by both nucleosome-stacking interactions and the intervening linker DNA. Chromatin model system studies find that the topography of secondary structures is sensitive to the spacing of nucleosomes within an array. Understanding the relationship between nucleosome spacing and higher order chromatin structure will likely yield important insights into the dynamic nature of secondary chromatin structure as it occurs in vivo. Genome-wide nucleosome mapping studies find the distance between nucleosomes varies, and regions of uniformly spaced nucleosomes are often interrupted by regions of nonuniform spacing. This type of organization is found at a subset of actively transcribed genes in which a nucleosome-depleted region near the transcription start site is directly adjacent to uniformly spaced nucleosomes in the coding region. Here, we evaluate secondary chromatin structure and discuss the structural and functional implications of variable nucleosome distributions in different organisms and at gene regulatory junctions.
机译:真核生物中的遗传信息由染色质结构的战略层次组织管理。一级染色质结构描述了未折叠的核小体阵列,通常称为“串珠”。染色质通过核小体的非线性重排而形成稳定的二级染色质结构。一级和二级结构之间的染色质构象转变是由核小体堆积相互作用和中间的连接子DNA介导的。染色质模型系统研究发现,二级结构的拓扑结构对阵列中核小体的间距敏感。了解核小体间距与更高阶染色质结构之间的关系将可能对继发染色质结构在体内发生的动态性质产生重要的见解。全基因组的核小体作图研究发现核小体之间的距离各不相同,并且均匀间隔的核小体区域经常被不均匀间隔的区域打断。在活跃转录的基因的子集中发现这种类型的组织,其中转录起始位点附近的核小体耗尽区与编码区中均匀间隔的核小体直接相邻。在这里,我们评估次级染色质结构,并讨论了在不同生物体和基因调控连接处可变核小体分布的结构和功能含义。

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