European Laboratory for Non- Linear Spectroscopy, LENS, Via N. Carrara 1, 50019, Sesto Fiorentino, Italy.
Department of Physics and Astronomy, University of Florence, Via G. Sansone 1, 50019, Sesto Fiorentino, Italy.
Sci Rep. 2024 Jun 5;14(1):12902. doi: 10.1038/s41598-024-63729-x.
Bacterial biofilms are highly complex communities in which isogenic bacteria display different gene expression patterns and organize in a three-dimensional mesh gaining enhanced resistance to biocides. The molecular mechanisms behind such increased resistance remain mostly unknown, also because of the technical difficulties in biofilm investigation at the sub-cellular and molecular level. In this work we focus on the AcrAB-TolC protein complex, a multidrug efflux pump found in Enterobacteriaceae, whose overexpression is associated with most multiple drug resistance (MDR) phenotypes occurring in Gram-negative bacteria. We propose an optical method to quantify the expression level of the AcrAB-TolC pump within the biofilm volume at the sub-cellular level, with single-molecule sensitivity. Through a combination of super-resolution PALM with single objective light sheet and precision genome editing, we can directly quantify the spatial distribution of endogenous AcrAB-TolC pumps expressed in both planktonic bacteria and, importantly, within the bacterial biofilm volume. We observe a gradient of pump density within the biofilm volume and over the course of biofilm maturation. Notably, we propose an optical method that could be broadly employed to achieve volumetric super-resolution imaging of thick samples.
细菌生物膜是高度复杂的群落,其中同基因细菌表现出不同的基因表达模式,并以三维网格的形式组织起来,从而获得对杀菌剂的增强抗性。这种增强抗性的分子机制在很大程度上仍然未知,这也是因为在亚细胞和分子水平上研究生物膜存在技术困难。在这项工作中,我们专注于 AcrAB-TolC 蛋白复合物,这是一种在肠杆菌科中发现的多药物外排泵,其过度表达与革兰氏阴性菌中发生的大多数多重耐药(MDR)表型有关。我们提出了一种光学方法,可在亚细胞水平上对生物膜体积内的 AcrAB-TolC 泵的表达水平进行定量,具有单分子灵敏度。通过超分辨率 PALM 与单物镜光片的结合以及精确的基因组编辑,我们可以直接定量在浮游细菌中和重要的是在细菌生物膜体积内表达的内源性 AcrAB-TolC 泵的空间分布。我们观察到生物膜体积内和生物膜成熟过程中泵密度的梯度。值得注意的是,我们提出了一种光学方法,该方法可以广泛用于对厚样品进行体积超分辨率成像。