首页> 美国卫生研究院文献>Journal of Bacteriology >The Global Regulatory Proteins LetA and RpoS Control Phospholipase A Lysophospholipase A Acyltransferase and Other Hydrolytic Activities of Legionella pneumophila JR32
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The Global Regulatory Proteins LetA and RpoS Control Phospholipase A Lysophospholipase A Acyltransferase and Other Hydrolytic Activities of Legionella pneumophila JR32

机译:全球调节蛋白LetA和RpoS控制肺炎军团菌JR32的磷脂酶A溶血磷脂酶A酰基转移酶和其他水解活性

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摘要

Legionella pneumophila possesses a variety of secreted and cell-associated hydrolytic activities that could be involved in pathogenesis. The activities include phospholipase A, lysophospholipase A, glycerophospholipid:cholesterol acyltransferase, lipase, protease, phosphatase, RNase, and p-nitrophenylphosphorylcholine (p-NPPC) hydrolase. Up to now, there have been no data available on the regulation of the enzymes in L. pneumophila and no data at all concerning the regulation of bacterial phospholipases A. Therefore, we used L. pneumophila mutants in the genes coding for the global regulatory proteins RpoS and LetA to investigate the dependency of hydrolytic activities on a global regulatory network proposed to control important virulence traits in L. pneumophila. Our results show that both L. pneumophila rpoS and letA mutants exhibit on the one hand a dramatic reduction of secreted phospholipase A and glycerophospholipid:cholesterol acyltransferase activities, while on the other hand secreted lysophospholipase A and lipase activities were significantly increased during late logarithmic growth phase. The cell-associated phospholipase A, lysophospholipase A, and p-NPPC hydrolase activities, as well as the secreted protease, phosphatase, and p-NPPC hydrolase activities were significantly decreased in both of the mutant strains. Only cell-associated phosphatase activity was slightly increased. In contrast, RNase activity was not affected. The expression of plaC, coding for a secreted acyltransferase, phospholipase A, and lysophospholipase A, was found to be regulated by LetA and RpoS. In conclusion, our results show that RpoS and LetA affect phospholipase A, lysophospholipase A, acyltransferase, and other hydrolytic activities of L. pneumophila in a similar way, thereby corroborating the existence of the LetA/RpoS regulation cascade.
机译:肺炎军团菌具有多种可能与发病有关的分泌的和细胞相关的水解活性。活性包括磷脂酶A,溶血磷脂酶A,甘油磷脂:胆固醇酰基转移酶,脂肪酶,蛋白酶,磷酸酶,RNase和对硝基苯基磷酰胆碱(p-NPPC)水解酶。到目前为止,尚无关于肺炎链球菌中酶调节的数据,也没有有关细菌磷脂酶A调节的数据。因此,我们在编码全球调节蛋白的基因中使用了肺炎链球菌突变体RpoS和LetA调查了水解活动对拟议控制嗜肺乳杆菌重要毒力特性的全球监管网络的依赖性。我们的结果表明,嗜肺乳杆菌rpoS和letA突变体一方面表现出分泌的磷脂酶A和甘油磷脂:胆固醇酰基转移酶活性的显着降低,另一方面,在对数生长期后期,分泌的溶血磷脂酶A和脂肪酶活性显着增加。 。与细胞相关的磷脂酶A,溶血磷脂酶A和p-NPPC水解酶的活性,以及​​分泌的蛋白酶,磷酸酶和p-NPPC水解酶的活性在这两个突变菌株中均显着降低。仅细胞相关的磷酸酶活性略有增加。相反,RNase活性不受影响。发现由LetA和RpoS调节编码分泌的酰基转移酶,磷脂酶A和溶血磷脂酶A的plaC的表达。总之,我们的结果表明,RpoS和LetA以类似的方式影响磷脂酶A,溶血磷脂酶A,酰基转移酶和其他嗜肺乳杆菌的水解活性,从而证实了LetA / RpoS调控级联的存在。

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