Tuttobene Marisel Romina, Fernández-García Laura, Blasco Lucía, Cribb Pamela, Ambroa Anton, Müller Gabriela Leticia, Fernández-Cuenca Felipe, Bleriot Inés, Rodríguez Ramiro Esteban, Barbosa Beatriz G V, Lopez-Rojas Rafael, Trastoy Rocío, López María, Bou Germán, Tomás María, Mussi María A
Centro de Estudios Fotosintéticos y Bioquímicos de Rosario (CEFOBI-CONICET), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Rosario, Argentina.
Microbiology Department-Biomedical Research Institute A Coruña (INIBIC), Hospital A Coruña (CHUAC), University of A Coruña (UDC), A Coruña, Spain.
Front Microbiol. 2019 Jun 20;10:1376. doi: 10.3389/fmicb.2019.01376. eCollection 2019.
spp. are found in all environments on Earth due to their extraordinary capacity to survive in the presence of physical and chemical stressors. In this study, we analyzed global gene expression in airborne sp. strain 5-2Ac02 isolated from hospital environment in response to quorum network modulators and found that they induced the expression of genes of the acetoin/butanediol catabolism, volatile compounds shown to mediate interkingdom interactions. Interestingly, the gene, annotated as a putative transcriptional regulator, was truncated in the downstream regulatory region of the induced acetoin/butanediol cluster in sp. strain 5-2Ac02, and its functioning as a negative regulator of this cluster integrating quorum signals was confirmed in ATCC 17978. Moreover, we show that the acetoin catabolism is also induced by light and provide insights into the light transduction mechanism by showing that the photoreceptor BlsA interacts with and antagonizes the functioning of AcoN in , integrating also a temperature signal. The data support a model in which BlsA interacts with and likely sequesters AcoN at this condition, relieving acetoin catabolic genes from repression, and leading to better growth under blue light. This photoregulation depends on temperature, occurring at 23°C but not at 30°C. BlsA is thus a dual regulator, modulating different transcriptional regulators in the dark but also under blue light, representing thus a novel concept. The overall data show that quorum modulators as well as light regulate the acetoin catabolic cluster, providing a better understanding of environmental as well as clinical bacteria.
由于其在物理和化学应激源存在下具有非凡的生存能力,[具体物种]在地球上的所有环境中都有发现。在本研究中,我们分析了从医院环境中分离出的空气传播的[具体物种]菌株5 - 2Ac02对群体感应网络调节剂的全局基因表达,发现它们诱导了乙酰乳酸/丁二醇分解代谢基因的表达,这些挥发性化合物被证明可介导跨界相互作用。有趣的是,在[具体物种]菌株5 - 2Ac02中,被注释为假定转录调节因子的[具体基因]在诱导的乙酰乳酸/丁二醇簇的下游调节区域被截断,并且在ATCC 17978中证实了其作为整合群体感应信号的该簇的负调节因子的功能。此外,我们表明乙酰乳酸分解代谢也受光诱导,并通过证明光感受器BlsA与[具体物种]中的AcoN相互作用并拮抗其功能,整合温度信号,从而深入了解光转导机制。数据支持这样一个模型,即在此条件下BlsA与AcoN相互作用并可能隔离AcoN,解除乙酰乳酸分解代谢基因的抑制,导致在蓝光下更好的生长。这种光调节取决于温度,在23°C时发生,但在30°C时不发生。因此,BlsA是一种双重调节因子,在黑暗中以及蓝光下调节不同的转录调节因子,从而代表了一个新的概念。总体数据表明群体感应调节剂以及光调节乙酰乳酸分解代谢簇,有助于更好地理解环境细菌和临床细菌。