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嗜肺军团菌胞外核苷三磷酸二磷酸水解酶的酶学特性:底物特异性及毒力需求

Enzymatic properties of an ecto-nucleoside triphosphate diphosphohydrolase from Legionella pneumophila: substrate specificity and requirement for virulence.

作者信息

Sansom Fiona M, Riedmaier Patrice, Newton Hayley J, Dunstone Michelle A, Müller Christa E, Stephan Holger, Byres Emma, Beddoe Travis, Rossjohn Jamie, Cowan Peter J, d'Apice Anthony J F, Robson Simon C, Hartland Elizabeth L

机构信息

Department of Microbiology and Immunology and Medicine, University of Melbourne, Parkville, Victoria 3010, Australia.

出版信息

J Biol Chem. 2008 May 9;283(19):12909-18. doi: 10.1074/jbc.M801006200. Epub 2008 Mar 12.

Abstract

Legionella pneumophila is the predominant cause of Legionnaires disease, a severe and potentially fatal form of pneumonia. Recently, we identified an ecto-nucleoside triphosphate diphosphohydrolase (NTPDase) from L. pneumophila, termed Lpg1905, which enhances intracellular replication of L. pneumophila in eukaryotic cells. Lpg1905 is the first prokaryotic member of the CD39/NTPDase1 family of enzymes, which are characterized by the presence of five apyrase conserved regions and the ability to hydrolyze nucleoside tri- and diphosphates. Here we examined the substrate specificity of Lpg1905 and showed that apart from ATP and ADP, the enzyme catalyzed the hydrolysis of GTP and GDP but had limited activity against CTP, CDP, UTP, and UDP. Based on amino acid residues conserved in the apyrase conserved regions of eukaryotic NTPDases, we generated five site-directed mutants, Lpg1905E159A, R122A, N168A, Q193A, and W384A. Although the mutations E159A, R122A, Q193A, and W384A abrogated activity completely, N168A resulted in decreased activity caused by reduced affinity for nucleotides. When introduced into the lpg1905 mutant strain of L. pneumophila, only N168A partially restored the ability of L. pneumophila to replicate in THP-1 macrophages. Following intratracheal inoculation of A/J mice, none of the Lpg1905 mutants was able to restore virulence to an lpg1905 mutant during lung infection, thereby demonstrating the importance of NTPDase activity to L. pneumophila infection. Overall, the kinetic studies undertaken here demonstrated important differences to mammalian NTPDases and different sensitivities to NTPDase inhibitors that may reflect underlying structural variations.

摘要

嗜肺军团菌是军团病的主要病因,军团病是一种严重且可能致命的肺炎形式。最近,我们从嗜肺军团菌中鉴定出一种胞外核苷三磷酸二磷酸水解酶(NTPDase),称为Lpg1905,它能增强嗜肺军团菌在真核细胞内的复制。Lpg1905是CD39/NTPDase1酶家族的首个原核成员,该家族的特征是存在五个腺苷三磷酸双磷酸酶保守区域以及水解核苷三磷酸和二磷酸的能力。在此,我们研究了Lpg1905的底物特异性,结果表明,除ATP和ADP外,该酶还催化GTP和GDP的水解,但对CTP、CDP、UTP和UDP的活性有限。基于真核NTPDases的腺苷三磷酸双磷酸酶保守区域中保守的氨基酸残基,我们构建了五个定点突变体,即Lpg1905E159A、R122A、N168A、Q193A和W384A。尽管E159A、R122A、Q193A和W384A突变完全消除了活性,但N168A导致活性降低,这是由于对核苷酸的亲和力降低所致。当将其导入嗜肺军团菌的lpg1905突变株时,只有N168A部分恢复了嗜肺军团菌在THP-1巨噬细胞中的复制能力。经气管内接种A/J小鼠后,在肺部感染期间,没有一个Lpg1905突变体能将毒力恢复到lpg1905突变体水平,从而证明了NTPDase活性对嗜肺军团菌感染的重要性。总体而言,此处进行的动力学研究表明,与哺乳动物NTPDases存在重要差异,并且对NTPDase抑制剂具有不同的敏感性,这可能反映了潜在的结构变异。

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