Castillo-Zeledón Amanda, Rivas-Solano Olga, Villalta-Romero Fabián, Gómez-Espinoza Olman, Moreno Edgardo, Chaves-Olarte Esteban, Guzmán-Verri Caterina
Programa de Investigación en Enfermedades Tropicales, Escuela de Medicina Veterinaria, Universidad Nacional de Costa Rica, Heredia, Costa Rica.
Centro de Investigación en Biotecnología, Escuela de Biología, Instituto Tecnológico de Costa Rica, Campus Tecnológico Central Cartago, Cartago, Costa Rica.
Front Microbiol. 2023 Sep 14;14:1241143. doi: 10.3389/fmicb.2023.1241143. eCollection 2023.
is a facultative extracellular-intracellular bacterial zoonotic pathogen worldwide. It is also a major cause of abortion in bovines, generating economic losses. The two-component regulatory system BvrR/BvrS modulates the expression of genes required to transition from extracellular to intracellular lifestyles. However, few regulatory regions of BvrR direct target genes have been studied. In this study, we characterized the regulatory region of , a gene encoding an outer membrane protein that is positively regulated by TCS BvrR/BvrS. By - reporter fusions and β-galactosidase activity assays, we found that the region between-262 and + 127 is necessary for transcriptional activity, particularly a 111-bp long fragment located from-262 to -152. In addition, we demonstrated the binding of P-BvrR to three sites within the -140 to +1 region. Two of these sites were delimited between -18 to +1 and - 99 to -76 by DNase I footprinting and called DNA regulatory boxes 1 and 2, respectively. The third binding site (box 3) was delimited from -140 to -122 by combining EMSA and fluorescence anisotropy results. A molecular docking analysis with HDOCK predicted BvrR-DNA interactions between 11, 13, and 12 amino acid residue-nucleotide pairs in boxes 1, 2, and 3, respectively. A manual sequence alignment of the three regulatory boxes revealed the presence of inverted and non-inverted repeats of five to eight nucleotides, partially matching DNA binding motifs previously described for BvrR. We propose that P-BvrR binds directly to up to three regulatory boxes and probably interacts with other transcription factors to regulate expression. This gene regulation model could apply to other BvrR target genes and to orthologs of the TCS BvrR/BvrS and Omp25 in phylogenetically closed .
是一种全球范围内兼性胞外 - 胞内细菌性人畜共患病原体。它也是牛流产的主要原因,造成经济损失。双组分调控系统BvrR/BvrS调节从胞外生活方式转变为胞内生活方式所需基因的表达。然而,很少有关于BvrR直接靶基因调控区域的研究。在本研究中,我们对,一个编码外膜蛋白且受双组分系统BvrR/BvrS正向调控的基因的调控区域进行了表征。通过 - 报告基因融合和β - 半乳糖苷酶活性测定,我们发现 - 262至 + 127之间的区域对于转录活性是必需的,特别是位于 - 262至 - 152的111 bp长片段。此外,我们证明了磷酸化的BvrR与 - 140至 + 1区域内的三个位点结合。其中两个位点通过DNase I足迹法分别在 - 18至 + 1和 - 99至 - 76之间界定,分别称为DNA调控盒1和2。通过结合电泳迁移率变动分析(EMSA)和荧光各向异性结果,将第三个结合位点(盒3)界定在 - 140至 - 122之间。使用HDOCK进行的分子对接分析预测,盒1、2和3中分别有11、13和12个氨基酸残基 - 核苷酸对之间存在BvrR - DNA相互作用。对三个调控盒的手动序列比对揭示了五至八个核苷酸的反向和非反向重复序列的存在,部分与先前描述的BvrR的DNA结合基序匹配。我们提出磷酸化的BvrR直接结合多达三个调控盒,并且可能与其他转录因子相互作用以调节 表达。这种基因调控模型可能适用于其他BvrR靶基因以及系统发育关系密切的双组分系统BvrR/BvrS和Omp25的直系同源物。 (原文中部分表述不太清晰准确,可能存在一些小错误,但大致意思如上翻译)