Krogh Thøger Jensen, Franke Andre, Møller-Jensen Jakob, Kaleta Christoph
Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense, Denmark.
Institute of Clinical Molecular Biology (IKMB), Christian-Albrechts-University Kiel, Kiel, Germany.
Front Microbiol. 2020 Sep 1;11:2002. doi: 10.3389/fmicb.2020.02002. eCollection 2020.
Both intrinsic and extrinsic mechanisms regulating bacterial expression have been elucidated and described, however, such studies have mainly focused on local effects on the two-dimensional structure of the prokaryote genome while long-range as well as spatial interactions influencing gene expression are still only poorly understood. In this paper, we investigate the association between co-expression and distance between genes, using RNA-seq data at multiple growth phases in order to illuminate whether such conserved patterns are an indication of a gene regulatory mechanism relevant for prokaryotic cell proliferation, adaption, and evolution. We observe recurrent sinusoidal patterns in correlation of pairwise expression as function of genomic distance and rule out that these are caused by transcription-induced supercoiling gradients, gene clustering in operons, or association with regulatory transcription factors (TFs). By comparing spatial proximity for pairs of genomic bins with their correlation of pairwise expression, we further observe a high co-expression proportional with the spatial proximity. Based on these observations, we propose that the observed patterns are related to nucleoid structure as a product of transcriptional spilling, where genes actively influence transcription of spatially proximal genes through increases within shared local pools of RNA polymerases (RNAP), and actively spilling transcription onto neighboring genes.
调节细菌表达的内在和外在机制均已得到阐明和描述,然而,此类研究主要集中于对原核生物基因组二维结构的局部影响,而对影响基因表达的长程以及空间相互作用仍知之甚少。在本文中,我们利用多个生长阶段的RNA测序数据,研究共表达与基因间距离之间的关联,以阐明此类保守模式是否表明存在与原核细胞增殖、适应和进化相关的基因调控机制。我们观察到成对表达相关性随基因组距离变化呈现出周期性的正弦模式,并排除了这些模式是由转录诱导的超螺旋梯度、操纵子中的基因聚类或与调控转录因子(TFs)的关联所导致的可能性。通过比较基因组区间对的空间邻近性与其成对表达的相关性,我们进一步观察到共表达与空间邻近性高度相关。基于这些观察结果,我们提出所观察到的模式与作为转录溢出产物的类核结构有关,即基因通过共享的局部RNA聚合酶(RNAP)池中的增加,积极影响空间上邻近基因的转录,并将转录主动溢出到相邻基因上。