首页> 美国卫生研究院文献>Journal of Bacteriology >The Rickettsia prowazekii ExoU Homologue Possesses Phospholipase A1 (PLA1) PLA2 and Lyso-PLA2 Activities and Can Function in the Absence of Any Eukaryotic Cofactors In Vitro
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The Rickettsia prowazekii ExoU Homologue Possesses Phospholipase A1 (PLA1) PLA2 and Lyso-PLA2 Activities and Can Function in the Absence of Any Eukaryotic Cofactors In Vitro

机译:立克次氏菌ExoU同源物具有磷脂酶A1(PLA1)PLA2和Lyso-PLA2活性并且在没有任何真核辅助因子的情况下可以起作用

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摘要

Here we have characterized the Rickettsia prowazekii RP534 protein, a homologue of the Pseudomonas aeruginosa ExoU phospholipase A (PLA) secreted cytotoxin. Our studies showed that purified recombinant RP534 PLA possessed the predicted PLA2 and lyso-PLA2 activities based on what has been published for P. aeruginosa ExoU. RP534 also displayed PLA1 activity under the conditions tested, whereas ExoU did not. In addition, recombinant RP534 displayed a basal PLA activity that could hydrolyze phosphatidylcholine in the absence of any eukaryotic cofactors. Interestingly, the addition of bovine liver superoxide dismutase 1 (SOD1), a known activator of P. aeruginosa ExoU, resulted in an increased rate of RP534-catalyzed phospholipid hydrolysis, indicating that mechanisms of activation of the ExoU family of PLAs may be evolutionarily conserved. The mechanism of SOD1-dependent stimulation of RP534 was further examined using active site mutants and a fluorogenic phospholipid substrate whose hydrolysis by RP534 over a short time course is measureable only in the presence of SOD1. These studies suggest a mechanism by which SOD1 stimulates RP534 activity once it has bound to the substrate. We also show that antibody raised against RP534 was useful for immunoprecipitating active RP534 from R. prowazekii lysed cell extracts, thus verifying that this protein is expressed and active in rickettsiae isolated from embryonated hen egg yolk sacs.
机译:在这里,我们表征了立克次氏体RP534蛋白,铜绿假单胞菌ExoU磷脂酶A(PLA)分泌细胞毒素的同源物。我们的研究表明,基于铜绿假单胞菌ExoU已发表的数据,纯化的重组RP534 PLA具有预测的PLA2和溶血PLA2活性。 RP534在测试条件下也显示PLA1活性,而ExoU没有。此外,重组RP534表现出基础的PLA活性,可以在不存在任何真核辅因子的情况下水解磷脂酰胆碱。有趣的是,添加牛肝超氧化物歧化酶1(SOD1),即铜绿假单胞菌ExoU的已知激活剂,导致RP534催化的磷脂水解速率增加,表明PLAs ExoU家族的激活机制可能在进化上是保守的。 。使用活性位点突变体和荧光磷脂底物进一步检查了SOD1依赖性刺激RP534的机制,该底物仅在SOD1存在的情况下才能通过RP534在短时间内进行水解。这些研究表明,一旦SOD1与底物结合,SOD1就会通过其刺激RP534活性。我们还表明,针对RP534产生的抗体可用于从Prowazekii裂解的细胞提取物中免疫沉淀活性RP534,从而验证该蛋白在从胚鸡卵黄囊分离的立克次体中表达并具有活性。

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