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通过基因表达数据解析枯草芽孢杆菌和大肠杆菌的类核组织

Decoding the nucleoid organisation of Bacillus subtilis and Escherichia coli through gene expression data.

作者信息

Carpentier Anne-Sophie, Torrésani Bruno, Grossmann Alex, Hénaut Alain

机构信息

Laboratoire Génome et Informatique, CNRS UMR 8116, Tour Evry2, 523 Place des Terrasses, 91034 Evry Cedex, France.

出版信息

BMC Genomics. 2005 Jun 6;6:84. doi: 10.1186/1471-2164-6-84.

Abstract

BACKGROUND

Although the organisation of the bacterial chromosome is an area of active research, little is known yet on that subject. The difficulty lies in the fact that the system is dynamic and difficult to observe directly. The advent of massive hybridisation techniques opens the way to further studies of the chromosomal structure because the genes that are co-expressed, as identified by microarray experiments, probably share some spatial relationship. The use of several independent sets of gene expression data should make it possible to obtain an exhaustive view of the genes co-expression and thus a more accurate image of the structure of the chromosome.

RESULTS

For both Bacillus subtilis and Escherichia coli the co-expression of genes varies as a function of the distance between the genes along the chromosome. The long-range correlations are surprising: the changes in the level of expression of any gene are correlated (positively or negatively) to the changes in the expression level of other genes located at well-defined long-range distances. This property is true for all the genes, regardless of their localisation on the chromosome. We also found short-range correlations, which suggest that the location of these co-expressed genes corresponds to DNA turns on the nucleoid surface (14-16 genes).

CONCLUSION

The long-range correlations do not correspond to the domains so far identified in the nucleoid. We explain our results by a model of the nucleoid solenoid structure based on two types of spirals (short and long). The long spirals are uncoiled expressed DNA while the short ones correspond to coiled unexpressed DNA.

摘要

背景

尽管细菌染色体的组织方式是一个活跃的研究领域,但目前对该主题的了解还很少。困难在于该系统是动态的,难以直接观察。大规模杂交技术的出现为进一步研究染色体结构开辟了道路,因为通过微阵列实验确定的共表达基因可能共享一些空间关系。使用几组独立的基因表达数据应该能够全面了解基因共表达情况,从而更准确地描绘染色体结构。

结果

对于枯草芽孢杆菌和大肠杆菌,基因的共表达随沿染色体上基因间距离的变化而变化。长程相关性令人惊讶:任何基因表达水平的变化与位于明确长程距离处的其他基因的表达水平变化相关(正相关或负相关)。所有基因均具有此特性,无论其在染色体上的定位如何。我们还发现了短程相关性,这表明这些共表达基因的位置对应于类核表面的DNA螺旋圈(14 - 16个基因)。

结论

长程相关性与迄今在类核中鉴定出的结构域不对应。我们通过基于两种螺旋(短螺旋和长螺旋)的类核螺线管结构模型来解释我们的结果。长螺旋是解旋的表达DNA,而短螺旋对应于盘绕的未表达DNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9748/1177944/0749f565a87c/1471-2164-6-84-1.jpg

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