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Cra and cAMP Receptor Protein Have Opposing Roles in the Regulation of fruB in Vibrio cholerae

机译:CRA和CAMP受体蛋白在VIBRIO Cholerae中的FRUB调节中具有相反的作用

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The Gram-negative bacterium Vibrio cholerae adapts to changes in the environment by selectively producing the necessary machinery to take up and metabolize available carbohydrates. The import of fructose by the fructose-specific phosphoenolpyruvate (PEP) phosphotransferase system (PTS) is of particular interest because of its putative connection to cholera pathogenesis and persistence. Here, we describe the expression and regulation of fruB , which encodes an EIIA-FPr fusion protein as part of the fructose-specific PTS in V. cholerae. Using a series of transcriptional reporter fusions and additional biochemical and genetic assays, we identified Cra (catabolite repressor/activator) and cAMP receptor protein (CRP) as regulators of fruB expression and determined that this regulation is dependent upon the presence or absence of PTS sugars. Cra functions as a repressor, downregulating fruB expression in the absence of fructose when components of PTS~(Fru) are not needed. CRP functions as an activator of fruB expression. We also report that Cra and CRP can affect fruB expression independently; however, CRP can modulate cra expression in the presence of fructose and glucose. Evidence from this work provides the foundation for continued investigations into PTS~(Fru) and its relationship to the V. cholerae life cycle. IMPORTANCE Vibrio cholerae is the causative agent of cholera disease. While current treatments of care are accessible, we still lack an understanding of the molecular mechanisms that allow V. cholerae to survive in both aquatic reservoirs and the human small intestine, where pathogenesis occurs. Central to V. cholerae’s survival is its ability to use available carbon sources. Here, we investigate the regulation of fruB , which encodes a protein central to the import and metabolism of fructose. We show that fruB expression is controlled by the transcriptional regulators Cra and CRP. This work contributes toward a clearer understanding of how carbon source availability impacts the physiology and, potentially, the persistence of the pathogen.
机译:革兰氏阴性细菌弧菌霍乱通过选择性地产生必要的机器来吸收和代谢可用的碳水化合物来适应环境的变化。由于其与霍乱发病机制和持久性的推定连接,由果糖特异性磷酸丙酮酸(PEP)磷酸氯苯吡喃(PEP)磷酸磷酸酯酶系统(PTS)的进口特别感兴趣。在这里,我们描述了FRUB的表达和调节,其将EIIA-FPR融合蛋白编码为霍乱的果糖特异性PTS的一部分。使用一系列转录报告者融合和额外的生化和遗传测定,我们将CRA(分酵母阻遏物/活化剂)和CAMP受体蛋白(CRP)确定为FRUB表达的调节剂,并确定该调节依赖于PTS糖的存在或不存在。 CRA作为阻遏物,在不需要PTS〜(FRU)的组分时,在没有果糖的情况下下调FRUB表达。 CRP用作FRUB表达的激活器。我们还报告称CRA和CRP可以独立地影响FRUB表达;然而,CRP可以在果糖和葡萄糖存在下调节CRA表达。来自这项工作的证据为PTS〜(FRU)的持续调查提供了基础,以及与霍乱生命周期的关系。 Importance Vibrio Cholerae是霍乱疾病的致病因子。虽然目前的护理治疗方法可以获得,但我们仍然缺乏对慢性储层和人类小肠来生存的分子机制的理解,其中发生发病机制。霍乱的生存中的核心是它使用可用碳源的能力。在这里,我们调查FRUB的调节,其对果糖的进口和代谢进行编码蛋白质。我们表明FRUB表达由转录调节器CRA和CRP控制。这项工作有助于更清楚地了解碳源可用性如何影响生理学以及可能是病原体的持久性。

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