Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333CC Leiden, The Netherlands.
Centre for Microbial Cell Biology, Leiden University, Leiden, The Netherlands.
Nucleic Acids Res. 2022 Nov 28;50(21):12166-12185. doi: 10.1093/nar/gkac1064.
Nucleoid-associated proteins (NAPs) play a central role in chromosome organization and environment-responsive transcription regulation. The Bacillus subtilis-encoded NAP Rok binds preferentially AT-rich regions of the genome, which often contain genes of foreign origin that are silenced by Rok binding. Additionally, Rok plays a role in chromosome architecture by binding in genomic clusters and promoting chromosomal loop formation. Based on this, Rok was proposed to be a functional homolog of E. coli H-NS. However, it is largely unclear how Rok binds DNA, how it represses transcription and whether Rok mediates environment-responsive gene regulation. Here, we investigated Rok's DNA binding properties and the effects of physico-chemical conditions thereon. We demonstrate that Rok is a DNA bridging protein similar to prototypical H-NS-like proteins. However, unlike these proteins, the DNA bridging ability of Rok is not affected by changes in physico-chemical conditions. The DNA binding properties of the Rok interaction partner sRok are affected by salt concentration. This suggests that in a minority of Bacillus strains Rok activity can be modulated by sRok, and thus respond indirectly to environmental stimuli. Despite several functional similarities, the absence of a direct response to physico-chemical changes establishes Rok as disparate member of the H-NS family.
核小体相关蛋白(NAPs)在染色体组织和环境响应转录调控中起着核心作用。枯草芽孢杆菌编码的 NAP Rok 优先结合基因组中富含 AT 的区域,这些区域通常包含外源基因,Rok 结合会使其沉默。此外,Rok 通过结合基因组簇并促进染色体环形成,在染色体结构中发挥作用。基于此,Rok 被认为是大肠杆菌 H-NS 的功能同源物。然而,Rok 如何结合 DNA、如何抑制转录以及是否介导环境响应基因调控等问题在很大程度上仍不清楚。在这里,我们研究了 Rok 的 DNA 结合特性以及理化条件对其的影响。我们证明 Rok 是一种类似于典型 H-NS 样蛋白的 DNA 桥接蛋白。然而,与这些蛋白不同的是,Rok 的 DNA 桥接能力不受理化条件变化的影响。Rok 相互作用伙伴 sRok 的 DNA 结合特性受盐浓度的影响。这表明在少数芽孢杆菌菌株中,Rok 的活性可以被 sRok 调节,从而间接响应环境刺激。尽管存在一些功能相似性,但缺乏对理化变化的直接响应将 Rok 确立为 H-NS 家族的不同成员。