Department of Molecular Microbiology, John Innes Centre, Norwich, United Kingdom.
Department of Biological Chemistry, John Innes Centre, Norwich, United Kingdom.
PLoS Genet. 2021 Apr 19;17(4):e1009524. doi: 10.1371/journal.pgen.1009524. eCollection 2021 Apr.
An important prelude to bacterial infection is the ability of a pathogen to survive independently of the host and to withstand environmental stress. The compatible solute trehalose has previously been connected with diverse abiotic stress tolerances, particularly osmotic shock. In this study, we combine molecular biology and biochemistry to dissect the trehalose metabolic network in the opportunistic human pathogen Pseudomonas aeruginosa PAO1 and define its role in abiotic stress protection. We show that trehalose metabolism in PAO1 is integrated with the biosynthesis of branched α-glucan (glycogen), with mutants in either biosynthetic pathway significantly compromised for survival on abiotic surfaces. While both trehalose and α-glucan are important for abiotic stress tolerance, we show they counter distinct stresses. Trehalose is important for the PAO1 osmotic stress response, with trehalose synthesis mutants displaying severely compromised growth in elevated salt conditions. However, trehalose does not contribute directly to the PAO1 desiccation response. Rather, desiccation tolerance is mediated directly by GlgE-derived α-glucan, with deletion of the glgE synthase gene compromising PAO1 survival in low humidity but having little effect on osmotic sensitivity. Desiccation tolerance is independent of trehalose concentration, marking a clear distinction between the roles of these two molecules in mediating responses to abiotic stress.
细菌感染的一个重要前提是病原体能够在离开宿主的情况下独立生存,并能够承受环境压力。相容溶质海藻糖以前与多种非生物胁迫耐受性有关,特别是渗透冲击。在这项研究中,我们结合了分子生物学和生物化学来剖析机会性病原体铜绿假单胞菌 PAO1 中的海藻糖代谢网络,并定义了其在非生物胁迫保护中的作用。我们表明,PAO1 中的海藻糖代谢与分支α-葡聚糖(糖原)的生物合成相整合,这两种生物合成途径中的突变体在非生物表面上的生存能力显著受损。虽然海藻糖和α-葡聚糖对于非生物胁迫耐受性都很重要,但我们表明它们对抗不同的应激。海藻糖对 PAO1 的渗透压应激反应很重要,海藻糖合成突变体在高盐条件下的生长受到严重损害。然而,海藻糖并不直接参与 PAO1 的干燥应激反应。相反,干燥耐受性是由 GlgE 衍生的α-葡聚糖直接介导的,glgE 合酶基因的缺失会使 PAO1 在低湿度下的生存能力受损,但对渗透压敏感性几乎没有影响。干燥耐受性与海藻糖浓度无关,这清楚地区分了这两种分子在介导非生物胁迫反应中的作用。