School of Basic Medical Sciences and Forensic Medicine, Hangzhou Medical College, Hangzhou, Zhejiang, 310053, China; School of Public Health, Hangzhou Medical College, Hangzhou, Zhejiang, 310053, China; Zouping Center for Disease Control and Prevention, Zouping, Shandong, 256200, China.
School of Basic Medical Sciences and Forensic Medicine, Hangzhou Medical College, Hangzhou, Zhejiang, 310053, China; School of Public Health, Hangzhou Medical College, Hangzhou, Zhejiang, 310053, China.
Microbiol Res. 2024 Oct;287:127864. doi: 10.1016/j.micres.2024.127864. Epub 2024 Jul 31.
The functional amyloid of Pseudomonas (Fap) is essential for the formation of macrocolony biofilms, pellicles, and solid surface-associated (SSA) biofilms of Pseudomonas fluorescens PF07, an isolate from refrigerated marine fish. However, limited information on the expression regulation of fap genes is available. Herein, we found that a novel bacterial enhancer-binding protein (bEBP), BrfA, regulated Fap-dependent biofilm formation by directly sensing cyclic diguanosine monophosphate (c-di-GMP). Our in vivo data showed that the REC domain deletion of BrfA promoted fap gene expression and biofilm formation, and c-di-GMP positively regulated the transcription of fapA in a BrfA-dependent manner. In in vitro experiments, we found that the ATPase activity of BrfA was inhibited by the REC domain and was activated by c-di-GMP. BrfA and the sigma factor RpoN bound to the upstream region of fapA, and the binding ability of BrfA was not affected by either deletion of the REC domain or c-di-GMP. BrfA specifically bound to the three enhancer sites upstream of the fapA promoter, which contain the consensus sequence CA-(N4)-TGA(A/T)ACACC. In vivo experiments using a lacZ fusion reporter indicated that all three BrfA enhancer sites were essential for the activation of fapA transcription. Overall, these findings reveal that BrfA is a new type of c-di-GMP-responsive transcription factor that directly controls the transcription of Fap biosynthesis genes in P. fluorescens. Fap functional amyloids and BrfA-type transcription factors are widespread in Pseudomonas species. The novel insights into the c-di-GMP- and BrfA-dependent expression regulation of fap provided by this work will contribute to the development of antibiofilm strategies.
假单胞菌的功能淀粉样蛋白(Fap)对于形成假单胞菌荧光素 PF07 的宏观菌落生物膜、菌膜和固着表面相关(SSA)生物膜是必不可少的,PF07 是一种从冷藏海洋鱼类中分离出来的菌株。然而,关于 fap 基因表达调控的信息有限。在此,我们发现一种新型细菌增强子结合蛋白(bEBP)BrfA 通过直接感应环二鸟苷酸(c-di-GMP)来调节 Fap 依赖性生物膜形成。我们的体内数据表明,BrfA 的 REC 结构域缺失促进了 fap 基因的表达和生物膜的形成,并且 c-di-GMP 以 BrfA 依赖的方式正向调节 fapA 的转录。在体外实验中,我们发现 BrfA 的 ATP 酶活性受到 REC 结构域的抑制,并被 c-di-GMP 激活。BrfA 和 sigma 因子 RpoN 结合到 fapA 的上游区域,BrfA 的结合能力不受 REC 结构域缺失或 c-di-GMP 的影响。BrfA 特异性结合到 fapA 启动子上游的三个增强子位点,这些位点包含 CA-(N4)-TGA(A/T)ACACC 共识序列。体内使用 lacZ 融合报告基因的实验表明,fapA 启动子上游的三个 BrfA 增强子位点对于 fapA 转录的激活都是必需的。总的来说,这些发现表明 BrfA 是一种新型的 c-di-GMP 响应型转录因子,它直接控制假单胞菌属中 Fap 生物合成基因的转录。Fap 功能淀粉样蛋白和 BrfA 型转录因子在假单胞菌属中广泛存在。本研究揭示了 c-di-GMP 和 BrfA 依赖的 fap 表达调控的新见解,将有助于开发抗生物膜策略。