Picker Michael A, Karney Monika M A, Gerson Taylor M, Karabachev Alexander D, Duhart Juan C, McKenna Joy A, Wing Helen J
bioRxiv. 2023 Jan 10:2023.01.09.523335. doi: 10.1101/2023.01.09.523335.
In Bacteria, nucleoid structuring proteins govern nucleoid dynamics and regulate transcription. In ., at ≤ 30 °C, the histone-like nucleoid structuring protein (H-NS) transcriptionally silences many genes on the large virulence plasmid. Upon a switch to 37 °C, VirB, a DNA binding protein and key transcriptional regulator of virulence, is produced. VirB functions to counter H-NS-mediated silencing in a process called transcriptional anti-silencing. Here, we show that VirB mediates a loss of negative DNA supercoils from our plasmid-borne, VirB-regulated reporter, . The changes are not caused by a VirB-dependent increase in transcription, nor do they require the presence of H-NS. Instead, the VirB-dependent change in DNA supercoiling requires the interaction of VirB with its DNA binding site, a critical first step in VirB-dependent gene regulation. Using two complementary approaches, we show that VirB:DNA interactions introduce positive supercoils in plasmid DNA. Subsequently, by exploiting transcription-coupled DNA supercoiling, we reveal that a localized loss of negative supercoils is sufficient to alleviate H-NS-mediated transcriptional silencing, independently of VirB. Together, our findings provide novel insight into VirB, a central regulator of virulence and more broadly, a molecular mechanism that offsets H-NS-dependent silencing of transcription in bacteria.
在细菌中,类核结构蛋白控制类核动态并调节转录。在[具体细菌名称]中,在≤30°C时,类组蛋白类核结构蛋白(H-NS)会转录沉默大型毒力质粒上的许多基因。当温度切换到37°C时,会产生VirB,一种DNA结合蛋白和[具体细菌名称]毒力的关键转录调节因子。VirB在一个称为转录抗沉默的过程中发挥作用,以对抗H-NS介导的沉默。在这里,我们表明VirB介导了我们质粒携带的、受VirB调节的报告基因[具体基因名称]的负超螺旋DNA的减少。这些变化不是由VirB依赖的转录增加引起的,也不需要H-NS的存在。相反,VirB依赖的DNA超螺旋变化需要VirB与其DNA结合位点相互作用,这是VirB依赖的基因调控的关键第一步。使用两种互补方法,我们表明VirB与DNA的相互作用会在质粒DNA中引入正超螺旋。随后,通过利用转录偶联的DNA超螺旋,我们揭示了负超螺旋的局部减少足以减轻H-NS介导的转录沉默,而与VirB无关。总之,我们的发现为VirB提供了新的见解,VirB是[具体细菌名称]毒力的核心调节因子,更广泛地说,是一种抵消细菌中H-NS依赖的转录沉默的分子机制。