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Characterization of the Vibrio cholerae VolA Surface-Exposed Lipoprotein Lysophospholipase

机译:霍乱弧菌VolA表面暴露的脂蛋白溶血磷脂酶的表征

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Bacterial lipases play important roles in bacterial metabolism and environmental response. Our laboratory recently discovered that a novel lipoprotein lysophospholipase, VolA, localizes on the surface of the Gram-negative aquatic pathogen Vibrio cholerae. VolA functions to cleave exogenous lysophosphatidylcholine, freeing the fatty acid moiety for use by V. cholerae. This fatty acid is transported into the cell and can be used as a nutrient and, more importantly, as a way to alter the membrane architecture via incorporation into the phospholipid biosynthesis pathway. There are few examples of Gram-negative, surface-exposed lipoproteins, and VolA is unique, as it has a previously undercharacterized function in V. cholerae membrane remodeling. Herein, we report the biochemical characterization of VolA. We show that VolA is a canonical lipoprotein via mass spectrometry analysis and demonstrate the in vitro activity of VolA under a variety of conditions. Additionally, we show that VolA contains a conserved Gly-Xaa-Ser-Xaa-Gly motif typical of lipases. Interestingly, we report the observation of VolA homologs in other aquatic pathogens. An Aeromonas hydrophila VolA homolog complements a V. cholerae VolA mutant in growth on lysophosphatidylcholine as the sole carbon source and in enzymatic assays. These results support the idea that the lipase activity of surface-exposed VolA likely contributes to the success of V. cholerae, improving the overall adaptation and survival of the organism in different environments.
机译:细菌脂肪酶在细菌代谢和环境反应中起重要作用。我们的实验室最近发现,一种新型脂蛋白溶血磷脂酶VolA位于革兰氏阴性水生病原霍乱弧菌的表面。 VolA的功能是裂解外源溶血磷脂酰胆碱,释放出供霍乱弧菌使用的脂肪酸部分。该脂肪酸被运输到细胞中,可以用作营养物,更重要的是,可以通过掺入磷脂生物合成途径来改变膜结构的方法。革兰氏阴性,表面暴露的脂蛋白的例子很少,而VolA是独特的,因为它在霍乱弧菌的膜重塑中具有先前特征不足的功能。在此,我们报道了VolA的生化特性。我们通过质谱分析表明VolA是一种典型的脂蛋白,并证明了VolA在各种条件下的体外活性。此外,我们显示VolA包含典型的脂肪酶的保守Gly-Xaa-Ser-Xaa-Gly基序。有趣的是,我们报告了在其他水生病原体中观察到的VolA同源物。嗜水气单胞菌VolA同源物在作为唯一碳源的溶血磷脂酰胆碱上生长和在酶促测定中与霍乱弧菌VolA突变体互补。这些结果支持这样的想法,即表面暴露的VolA的脂肪酶活性可能有助于霍乱弧菌的成功,从而提高了生物体在不同环境中的总体适应性和存活率。

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