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糖依赖性介质酸化促进 YfaL 蛋白介导的自我聚集、生物膜形成和酸应激抗性的生物物理见解。

Biophysical insights into sugar-dependent medium acidification promoting YfaL protein-mediated self-aggregation, biofilm formation and acid stress resistance.

机构信息

Institut Pasteur, Université Paris Cité, Genetics of Biofilms Laboratory, 75015 Paris, France.

Université de Lorraine, CNRS, Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), F-54000 Nancy, France.

出版信息

Nanoscale. 2024 Sep 26;16(37):17567-17584. doi: 10.1039/d4nr01884b.

DOI:10.1039/d4nr01884b
PMID:39225712
Abstract

The ability of bacteria to interact with their environment is crucial to form aggregates and biofilms, and develop a collective stress resistance behavior. Despite its environmental and medical importance, bacterial aggregation is poorly understood and mediated by few known adhesion structures. Here, we identified a new role for a surface-exposed protein, YfaL, which can self-recognize and induce bacterial autoaggregation. This process occurs only under acidic conditions generated during growth in the presence of fermentable sugars. These findings were supported by electrokinetic and atomic force spectroscopy measurements, which revealed changes in the electrostatic, hydrophobic, and structural properties of YfaL-decorated cell surface upon sugar consumption. Furthermore, YfaL-mediated autoaggregation promotes biofilm formation and enhances resistance to acid stress. The prevalence and conservation of YfaL in environmental and clinical suggest strong evolutionary selection for its function inside or outside the host. Overall, our results emphasize the importance of environmental parameters such as low pH as physicochemical cues influencing bacterial adhesion and aggregation, affecting and potentially other bacteria's resistance to environmental stress.

摘要

细菌与环境相互作用的能力对于形成聚集体和生物膜以及发展集体应激抗性行为至关重要。尽管细菌聚集具有环境和医学重要性,但它的介导机制知之甚少,并且只涉及少数已知的粘附结构。在这里,我们发现了一种表面暴露的蛋白质 YfaL 的新作用,它可以自我识别并诱导细菌自动聚集。这个过程仅在存在可发酵糖的生长过程中产生的酸性条件下发生。这些发现得到了电动和原子力光谱测量的支持,该测量揭示了在糖消耗时,YfaL 修饰的细胞表面的静电、疏水性和结构特性发生变化。此外,YfaL 介导的自动聚集促进生物膜形成并增强对酸应激的抗性。YfaL 在环境和临床中的普遍性和保守性表明,其在宿主内外的功能受到强烈的进化选择。总的来说,我们的结果强调了环境参数(如低 pH 值)作为影响细菌粘附和聚集的物理化学线索的重要性,从而影响其自身和其他细菌对环境应激的抗性。

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