Klebsiella pneumoniae induces host metabolic stress that promotes tolerance to pulmonary infection.
Name:
Publisher version
View Source
Access full-text PDFOpen Access
View Source
Check access options
Check access options
Author
Wong Fok Lung, TaniaCharytonowicz, Daniel
Beaumont, Kristin G
Shah, Shivang S
Sridhar, Shwetha H
Gorrie, Claire L
Mu, Andre
Hofstaedter, Casey E
Varisco, David
McConville, Thomas H
Drikic, Marija
Fowler, Brandon
Urso, Andreacarola
Shi, Wei
Fucich, Dario
Annavajhala, Medini K
Khan, Ibrahim N
Oussenko, Irina
Francoeur, Nancy
Smith, Melissa L
Stockwell, Brent R
Lewis, Ian A
Hachani, Abderrahman
Upadhyay Baskota, Swikrity
Uhlemann, Anne-Catrin
Ahn, Danielle
Ernst, Robert K
Howden, Benjamin P
Sebra, Robert
Prince, Alice
Date
2022-04-03Journal
Cell MetabolismPublisher
ElsevierType
Article
Metadata
Show full item recordAbstract
K. pneumoniae sequence type 258 (Kp ST258) is a major cause of healthcare-associated pneumonia. However, it remains unclear how it causes protracted courses of infection in spite of its expression of immunostimulatory lipopolysaccharide, which should activate a brisk inflammatory response and bacterial clearance. We predicted that the metabolic stress induced by the bacteria in the host cells shapes an immune response that tolerates infection. We combined in situ metabolic imaging and transcriptional analyses to demonstrate that Kp ST258 activates host glutaminolysis and fatty acid oxidation. This response creates an oxidant-rich microenvironment conducive to the accumulation of anti-inflammatory myeloid cells. In this setting, metabolically active Kp ST258 elicits a disease-tolerant immune response. The bacteria, in turn, adapt to airway oxidants by upregulating the type VI secretion system, which is highly conserved across ST258 strains worldwide. Thus, much of the global success of Kp ST258 in hospital settings can be explained by the metabolic activity provoked in the host that promotes disease tolerance.Rights/Terms
Copyright © 2022 The Author(s). Published by Elsevier Inc. All rights reserved.Keyword
Klebsiella pneumoniaeM2 macrophages
MDSCs
bacterial adaptation
disease tolerance
immunometabolism
immunosuppression
itaconate
pulmonary infection
type 6 secretion system
Identifier to cite or link to this item
http://hdl.handle.net/10713/18620ae974a485f413a2113503eed53cd6c53
10.1016/j.cmet.2022.03.009
Scopus Count
Collections
Related articles
- Genome-Wide Screening for Enteric Colonization Factors in Carbapenem-Resistant ST258 Klebsiella pneumoniae.
- Authors: Jung HJ, Littmann ER, Seok R, Leiner IM, Taur Y, Peled J, van den Brink M, Ling L, Chen L, Kreiswirth BN, Goodman AL, Pamer EG
- Issue date: 2019 Mar 12
- Differences in Inflammatory Response Induced by Two Representatives of Clades of the Pandemic ST258 Klebsiella pneumoniae Clonal Lineage Producing KPC-Type Carbapenemases.
- Authors: Castronovo G, Clemente AM, Antonelli A, D'Andrea MM, Tanturli M, Perissi E, Paccosi S, Parenti A, Cozzolino F, Rossolini GM, Torcia MG
- Issue date: 2017
- Vaccine Protection against Multidrug-Resistant Klebsiella pneumoniae in a Nonhuman Primate Model of Severe Lower Respiratory Tract Infection.
- Authors: Malachowa N, Kobayashi SD, Porter AR, Freedman B, Hanley PW, Lovaglio J, Saturday GA, Gardner DJ, Scott DP, Griffin A, Cordova K, Long D, Rosenke R, Sturdevant DE, Bruno D, Martens C, Kreiswirth BN, DeLeo FR
- Issue date: 2019 Dec 17
- An acquired acyltransferase promotes Klebsiella pneumoniae ST258 respiratory infection.
- Authors: Ahn D, Bhushan G, McConville TH, Annavajhala MK, Soni RK, Wong Fok Lung T, Hofstaedter CE, Shah SS, Chong AM, Castano VG, Ernst RK, Uhlemann AC, Prince A
- Issue date: 2021 Jun 1
- Differential Th17 response induced by the two clades of the pandemic ST258 Klebsiella pneumoniae clonal lineages producing KPC-type carbapenemase.
- Authors: Clemente AM, Castronovo G, Antonelli A, D'Andrea MM, Tanturli M, Perissi E, Paccosi S, Parenti A, Cozzolino F, Rossolini GM, Torcia MG
- Issue date: 2017