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核糖体DNA与Hi-C相互作用的图谱揭示了折叠的人类基因组中的5S和45S rDNA锚定位点。

A Portrait of Ribosomal DNA Contacts with Hi-C Reveals 5S and 45S rDNA Anchoring Points in the Folded Human Genome.

作者信息

Yu Shoukai, Lemos Bernardo

机构信息

Program in Molecular and Integrative Physiological Sciences, Department of Environmental Health, Harvard T. H. Chan School of Public Health, Boston, Massachusetts.

Program in Molecular and Integrative Physiological Sciences, Department of Environmental Health, Harvard T. H. Chan School of Public Health, Boston, Massachusetts

出版信息

Genome Biol Evol. 2016 Dec 31;8(11):3545-3558. doi: 10.1093/gbe/evw257.

Abstract

Ribosomal RNAs (rRNAs) account for >60% of all RNAs in eukaryotic cells and are encoded in the ribosomal DNA (rDNA) arrays. The rRNAs are produced from two sets of loci: the 5S rDNA array resides exclusively on human chromosome 1, whereas the 45S rDNA array resides on the short arm of five human acrocentric chromosomes. The 45S rDNA gives origin to the nucleolus, the nuclear organelle that is the site of ribosome biogenesis. Intriguingly, 5S and 45S rDNA arrays exhibit correlated copy number variation in lymphoblastoid cells (LCLs). Here we examined the genomic architecture and repeat content of the 5S and 45S rDNA arrays in multiple human genome assemblies (including PacBio MHAP assembly) and ascertained contacts between the rDNA arrays and the rest of the genome using Hi-C datasets from two human cell lines (erythroleukemia K562 and lymphoblastoid cells). Our analyses revealed that 5S and 45S arrays each have thousands of contacts in the folded genome, with rDNA-associated regions and genes dispersed across all chromosomes. The rDNA contact map displayed conserved and disparate features between two cell lines, and pointed to specific chromosomes, genomic regions, and genes with evidence of spatial proximity to the rDNA arrays; the data also showed a lack of direct physical interaction between the 5S and 45S rDNA arrays. Finally, the analysis identified an intriguing organization in the 5S array with Alu and 5S elements adjacent to one another and organized in opposite orientation along the array. Portraits of genome folding centered on the ribosomal DNA array could help understand the emergence of concerted variation, the control of 5S and 45S expression, as well as provide insights into an organelle that contributes to the spatial localization of human chromosomes during interphase.

摘要

核糖体RNA(rRNA)占真核细胞中所有RNA的60%以上,由核糖体DNA(rDNA)阵列编码。rRNA由两组基因座产生:5S rDNA阵列仅位于人类1号染色体上,而45S rDNA阵列位于五条人类近端着丝粒染色体的短臂上。45S rDNA产生核仁,核仁是核糖体生物发生的场所。有趣的是,5S和45S rDNA阵列在淋巴母细胞(LCL)中表现出相关的拷贝数变异。在这里,我们研究了多个人类基因组组装体(包括PacBio MHAP组装体)中5S和45S rDNA阵列的基因组结构和重复序列含量,并使用来自两个人类细胞系(红白血病K562和淋巴母细胞)的Hi-C数据集确定了rDNA阵列与基因组其余部分之间的接触。我们的分析表明,5S和45S阵列在折叠基因组中各自有数千个接触点,rDNA相关区域和基因分散在所有染色体上。rDNA接触图谱在两个细胞系之间显示出保守和不同的特征,并指向特定的染色体、基因组区域和基因,这些区域有证据表明与rDNA阵列在空间上接近;数据还显示5S和45S rDNA阵列之间缺乏直接的物理相互作用。最后,分析确定了5S阵列中一个有趣的组织,其中Alu和5S元件彼此相邻,并沿阵列以相反方向排列。以核糖体DNA阵列为中心的基因组折叠图谱有助于理解协同变异的出现、5S和45S表达的控制,以及深入了解一个在间期有助于人类染色体空间定位的细胞器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5797/5203791/91015b9c9d06/evw257f1p.jpg

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