新月形茎杆菌
细菌圆形染色体
原核生物
染色体
生物
DNA
遗传学
基因组
计算生物学
基因
DNA复制
细菌蛋白
作者
Tung B. K. Le,Maxim Imakaev,Leonid A. Mirny,Michael T. Laub
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2013-10-25
卷期号:342 (6159): 731-734
被引量:639
标识
DOI:10.1126/science.1242059
摘要
Chromosomes must be highly compacted and organized within cells, but how this is achieved in vivo remains poorly understood. We report the use of chromosome conformation capture coupled with deep sequencing (Hi-C) to map the structure of bacterial chromosomes. Analysis of Hi-C data and polymer modeling indicates that the Caulobacter crescentus chromosome consists of multiple, largely independent spatial domains that are probably composed of supercoiled plectonemes arrayed into a bottle brush-like fiber. These domains are stable throughout the cell cycle and are reestablished concomitantly with DNA replication. We provide evidence that domain boundaries are established by highly expressed genes and the formation of plectoneme-free regions, whereas the histone-like protein HU and SMC (structural maintenance of chromosomes) promote short-range compaction and the colinearity of chromosomal arms, respectively. Collectively, our results reveal general principles for the organization and structure of chromosomes in vivo.
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