Tryptophan catabolism in Pseudomonas aeruginosa and potential for inter-kingdom relationship

被引:55
作者
Bortolotti, Perrine [1 ]
Hennart, Benjamin [2 ]
Thieffry, Camille [1 ]
Jausions, Guillaume [1 ]
Faure, Emmanuel [1 ]
Grandjean, Teddy [3 ]
Thepaut, Marion [3 ]
Dessein, Rodrigue [3 ]
Allorge, Delphine [2 ]
Guery, Benoit P. [4 ]
Faure, Karine [3 ]
Kipnis, Eric [3 ]
Toussaint, Bertrand [5 ,6 ]
Le Gouellec, Audrey [5 ,6 ]
机构
[1] Univ Lille, CHU Lille, EA Rech Translat Relat Hote Pathogenes 7366, F-59000 Lille, France
[2] Univ Lille Nord France, CHRU Lille France, Toxicol Lab, Pole Biol Pathol Genet,EA4483,IMPECS, Lille, France
[3] Univ Lille Nord France, Translat Host Pathogen Res Grp, Fac Med Lille UDSL, Lille, France
[4] Univ Lille Nord France, Fac Med Lille UDSL, Lille, France
[5] Univ Grenoble Alpes, Fac Med, CNRS, UMR5525,Lab TIMC TheREx, La Tronche, France
[6] CHUGA Grenoble, Unite Med Biochim Enzymes & Prot, CS10207, F-38043 Grenoble, Rhone Alpes, France
关键词
Pseudomonas aeruginosa; Kynurenine; Kynurenic acid; Tryptophan; Anthranilate; SUBSTRATE-SPECIFICITY; KYNURENINE PATHWAY; AMINOTRANSFERASE; PNEUMONIA; MECHANISM; MOLECULE; GENES;
D O I
10.1186/s12866-016-0756-x
中图分类号
Q93 [微生物学];
学科分类号
071005 [微生物学];
摘要
Background: Pseudomonas aeruginosa (Pa) is a Gram-negative bacteria frequently involved in healthcare-associated pneumonia with poor clinical outcome. To face the announced post-antibiotic era due to increasing resistance and lack of new antibiotics, new treatment strategies have to be developed. Immunomodulation of the host response involved in outcome could be an alternative therapeutic target in Pa-induced lung infection. Kynurenines are metabolites resulting from tryptophan catabolism and are known for their immunomodulatory properties. Pa catabolizes tryptophan through the kynurenine pathway. Interestingly, many host cells also possess the kynurenine pathway, whose metabolites are known to control immune system homeostasis. Thus, bacterial metabolites may interfere with the host's immune response. However, the kynurenine pathway in Pa, including functional enzymes, types and amounts of secreted metabolites remains poorly known. Using liquid chromatography coupled to mass spectrometry and different strains of Pa, we determined types and levels of metabolites produced by Pa ex vivo in growth medium, and the relevance of this production in vivo in a murine model of acute lung injury. Results: Ex vivo, Pa secretes clinically relevant kynurenine levels (mu M to mM). Pa also secretes kynurenic acid and 3-OH-kynurenine, suggesting that the bacteria possess both a functional kynurenine aminotransferase and kynurenine monooxygenase. The bacterial kynurenine pathway is the major pathway leading to anthranilate production both ex vivo and in vivo. In the absence of the anthranilate pathway, the kynurenine pathway leads to kynurenic acid production. Conclusion: Pa produces and secretes several metabolites of the kynurenine pathway. Here, we demonstrate the existence of new metabolic pathways leading to synthesis of bioactive molecules, kynurenic acid and 3-OH-kynurenine in Pa. The kynurenine pathway in Pa is critical to produce anthranilate, a crucial precursor of some Pa virulence factors. Metabolites (anthranilate, kynurenine, kynurenic acid) are produced at sustained levels both ex vivo and in vivo leading to a possible immunomodulatory interplay between bacteria and host. These data may imply that pulmonary infection with bacteria highly expressing the kynurenine pathway enzymes could influence the equilibrium of the host's tryptophan metabolic pathway, known to be involved in the immune response to infection. Further studies are needed to explore the effects of these metabolic changes on the pathophysiology of Pa infection.
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页码:1 / 10
页数:10
相关论文
共 37 条
[1]
Targeting key dioxygenases in tryptophan-kynurenine metabolism for immunomodulation and cancer chemotherapy [J].
Austin, Christopher J. D. ;
Rendina, Louis M. .
DRUG DISCOVERY TODAY, 2015, 20 (05) :609-617
[2]
The high amino-acid content of sputum from cystic fibrosis patients promotes growth of auxotrophic Pseudomonas aeruginosa [J].
Barth, AL ;
Pitt, TL .
JOURNAL OF MEDICAL MICROBIOLOGY, 1996, 45 (02) :110-119
[3]
Kynurenic Acid Triggers Firm Arrest of Leukocytes to Vascular Endothelium under Flow Conditions [J].
Barth, Marita C. ;
Ahluwalia, Neil ;
Anderson, Thomas J. T. ;
Hardy, Gregory J. ;
Sinha, Sumita ;
Alvarez-Cardona, Jose A. ;
Pruitt, Ivy E. ;
Rhee, Eugene P. ;
Colvin, Richard A. ;
Gerszten, Robert E. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (29) :19189-19195
[4]
Biosynthetic pathway of Pseudomonas aeruginosa 4-hydroxy-2-alkylquinofines [J].
Bredenbruch, F ;
Nimtz, M ;
Wray, V ;
Morr, M ;
Müller, R ;
Häussler, S .
JOURNAL OF BACTERIOLOGY, 2005, 187 (11) :3630-3635
[5]
Chen YQ, 2009, INT J TRYPTOPHAN RES, V2, P1
[6]
Heterologous expression and purification of kynurenine-3-monooxygenase from Pseudomonas fluorescens strain 17400 [J].
Crozier, Karen R. ;
Moran, Graham R. .
PROTEIN EXPRESSION AND PURIFICATION, 2007, 51 (02) :324-333
[7]
Cell death of human polymorphonuclear neutrophils induced by a Pseudomonas aeruginosa cystic fibrosis isolate requires a functional type III secretion system [J].
Dacheux, D ;
Attree, I ;
Schneider, C ;
Toussaint, B .
INFECTION AND IMMUNITY, 1999, 67 (11) :6164-6167
[8]
The Pseudomonas aeruginosa quinolone signal molecule overcomes the cell density-dependency of the quorum sensing hierarchy, regulates rhl-dependent genes at the onset of stationary phase and can be produced in the absence of LasR [J].
Diggle, SP ;
Winzer, K ;
Chhabra, SR ;
Chhabra, SR ;
Worrall, KE ;
Cámara, M ;
Williams, P .
MOLECULAR MICROBIOLOGY, 2003, 50 (01) :29-43
[9]
Two distinct pathways supply anthranilate as a precursor of the Pseudomonas quinolone signal [J].
Farrow, John M., III ;
Pesci, Everett C. .
JOURNAL OF BACTERIOLOGY, 2007, 189 (09) :3425-3433
[10]
The kynurenine pathway is activated in human obesity and shifted toward kynurenine monooxygenase activation [J].
Favennec, Marie ;
Hennart, Benjamin ;
Caiazzo, Robert ;
Leloire, Audrey ;
Yengo, Loic ;
Verbanck, Marie ;
Arredouani, Abdelilah ;
Marre, Michel ;
Pigeyre, Marie ;
Bessede, Alban ;
Guillemin, Gilles J. ;
Chinetti, Giulia ;
Staels, Bart ;
Pattou, Francois ;
Balkau, Beverley ;
Allorge, Delphine ;
Froguel, Philippe ;
Poulain-Godefroy, Odile .
OBESITY, 2015, 23 (10) :2066-2074