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Modulation of Enzymatic Activity and Biological Function of Listeria monocytogenes Broad-Range Phospholipase C by Amino Acid Substitutions and by Replacement with the Bacillus cereus Ortholog

机译:氨基酸取代和蜡状芽孢杆菌直系芽孢杆菌置换对单核细胞增生李斯特菌广谱磷脂酶C的酶活性和生物学功能的调节

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摘要

The secreted broad-range phosphatidylcholine (PC)-preferring phospholipase C (PC-PLC) of Listeria monocytogenes plays a role in the bacterium’s ability to escape from phagosomes and spread from cell to cell. Based on comparisons with two orthologs, Clostridium perfringens α-toxin and Bacillus cereus PLC (PLCBc), we generated PC-PLC mutants with altered enzymatic activities and substrate specificities and analyzed them for biological function in tissue culture and mouse models of infection. Two of the conserved active-site zinc-coordinating histidines were confirmed by single amino acid substitutions H69G and H118G, which resulted in proteins inactive in broth culture and unstable intracellularly. Substitutions D4E and H56Y remodeled the PC-PLC active site to more closely resemble the PLCBc active site, while a gene replacement resulted in L. monocytogenes secreting PLCBc. All of these mutants yielded similar amounts of active enzyme as wild-type PC-PLC both in broth culture and intracellularly. D4E increased activity on and specificity for PC, while H56Y and D4E H56Y showed higher activity on both PC and sphingomyelin, with reduced specificity for PC. As expected, PLCBc expressed by L. monocytogenes was highly specific for PC. During early intracellular growth in human epithelial cells, the D4E mutant and the PLCBc-expressing strain performed significantly better than the wild type, while the H56Y and D4E H56Y mutants showed a significant defect. In assays for cell-to-cell spread, the H56Y and D4E mutants had close to wild-type characteristics, while the spreading efficiency of PLCBc was significantly lower. These studies emphasize the species-specific features of PC-PLC important for growth in mammalian cells.
机译:单核细胞增生性李斯特氏菌分泌的广谱性磷脂酰胆碱(PC)-首选磷脂酶C(PC-PLC)在细菌逃脱吞噬体并在细胞之间扩散的能力中发挥了作用。基于与两个直系同源物产气荚膜梭菌α毒素和蜡状芽孢杆菌PLC(PLCBc)的比较,我们生成了具有改变的酶活性和底物特异性的PC-PLC突变体,并分析了它们在组织培养和小鼠感染模型中的生物学功能。通过单个氨基酸取代H69G和H118G证实了两个保守的活性位点锌配位组氨酸,这导致蛋白质在肉汤培养中失活并且在细胞内不稳定。替代物D4E和H56Y重塑了PC-PLC活性位点,使其更类似于PLCBc活性位点,而基因置换导致单核细胞增生李斯特菌分泌PLCBc。所有这些突变体在肉汤培养物中和细胞内均产生与野生型PC-PLC相似数量的活性酶。 D4E增加了对PC的活性和对PC的特异性,而H56Y和D4E H56Y在PC和鞘磷脂上均显示了更高的活性,而PC的特异性却降低了。不出所料,单核细胞增生李斯特氏菌表达的PLCBc对PC具有高度特异性。在人类上皮细胞的早期细胞内生长过程中,D4E突变体和表达PLCBc的菌株的表现明显优于野生型,而H56Y和D4E H56Y突变体表现出明显的缺陷。在细胞间传播的检测中,H56Y和D4E突变体具有接近野生型的特征,而PLCBc的传播效率则明显较低。这些研究强调了PC-PLC的物种特异性特征,对哺乳动物细胞的生长很重要。

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