Literature DB >> 18363878

Delay of phagosome maturation by a mycobacterial lipid is reversed by nitric oxide.

Sofia Axelrod1, Hartmut Oschkinat, Jana Enders, Brigitte Schlegel, Volker Brinkmann, Stefan H E Kaufmann, Albert Haas, Ulrich E Schaible.   

Abstract

Mycobacterium tuberculosis is a facultative intracellular pathogen that inhibits phagosome maturation in macrophages thereby securing survival and growth. Mycobacteria reside in an early endocytic compartment of near-neutral pH where they upregulate production of complex glycolipids such as trehalose dimycolate. Here, we report that trehalose dimycolate coated onto beads increased the bead retention in early phagosomes, i.e. at a similar stage as viable mycobacteria. Thus, a single mycobacterial lipid sufficed to divert phagosome maturation and likely contributes to mycobacterial survival in macrophages. Previous studies showed that activated macrophages promote maturation of mycobacterial phagosomes and eliminate mycobacteria through bactericidal effectors including nitric oxide generated by inducible nitric-oxide synthase. We show that deceleration of bead phagosome maturation by trehalose dimycolate was abolished in immune-activated wild type, but not in activated nitric-oxide synthase-deficient macrophages, nor when hydroxyl groups of trehalose dimycolate were chemically modified by reactive nitrogen intermediates. Thus, specific host defence effectors of activated macrophages directly target a specific virulence function of mycobacteria.

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Year:  2008        PMID: 18363878     DOI: 10.1111/j.1462-5822.2008.01147.x

Source DB:  PubMed          Journal:  Cell Microbiol        ISSN: 1462-5814            Impact factor:   3.715


  55 in total

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Journal:  Nat Rev Microbiol       Date:  2010-02       Impact factor: 60.633

2.  Fibrinogen regulates the cytotoxicity of mycobacterial trehalose dimycolate but is not required for cell recruitment, cytokine response, or control of mycobacterial infection.

Authors:  Kaori Sakamoto; Rachel E Geisel; Mi-Jeong Kim; Bryce T Wyatt; Llewelyn B Sellers; Stephen T Smiley; Andrea M Cooper; David G Russell; Elizabeth R Rhoades
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Review 3.  Virulence factors of the Mycobacterium tuberculosis complex.

Authors:  Marina A Forrellad; Laura I Klepp; Andrea Gioffré; Julia Sabio y García; Hector R Morbidoni; María de la Paz Santangelo; Angel A Cataldi; Fabiana Bigi
Journal:  Virulence       Date:  2012-10-17       Impact factor: 5.882

Review 4.  Mycobacterium tuberculosis and the intimate discourse of a chronic infection.

Authors:  David G Russell
Journal:  Immunol Rev       Date:  2011-03       Impact factor: 12.988

Review 5.  Mannose-capped lipoarabinomannan in Mycobacterium tuberculosis pathogenesis.

Authors:  Joanne Turner; Jordi B Torrelles
Journal:  Pathog Dis       Date:  2018-06-01       Impact factor: 3.166

6.  Cyclic AMP intoxication of macrophages by a Mycobacterium tuberculosis adenylate cyclase.

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7.  Sphingosine kinase-1 (SphK-1) regulates Mycobacterium smegmatis infection in macrophages.

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Journal:  PLoS One       Date:  2010-05-17       Impact factor: 3.240

Review 8.  C-type lectin receptors in tuberculosis: what we know.

Authors:  Surabhi Goyal; Tilman E Klassert; Hortense Slevogt
Journal:  Med Microbiol Immunol       Date:  2016-07-28       Impact factor: 3.402

Review 9.  Cell-autonomous effector mechanisms against mycobacterium tuberculosis.

Authors:  John D MacMicking
Journal:  Cold Spring Harb Perspect Med       Date:  2014-07-31       Impact factor: 6.915

10.  The killing of macrophages by Corynebacterium ulcerans.

Authors:  Elena Hacker; Lisa Ott; Jan Schulze-Luehrmann; Anja Lührmann; Veit Wiesmann; Thomas Wittenberg; Andreas Burkovski
Journal:  Virulence       Date:  2015-12-02       Impact factor: 5.882

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