Literature DB >> 28832027

Protein kinase C-delta (PKCδ), a marker of inflammation and tuberculosis disease progression in humans, is important for optimal macrophage killing effector functions and survival in mice.

S P Parihar1,2, M Ozturk1,2, M J Marakalala1, D T Loots3, R Hurdayal1,2,4, D Beukes Maasdorp3, M Van Reenen3, D E Zak5, F Darboe6, A Penn-Nicholson6, W A Hanekom6, M Leitges7, T J Scriba6, R Guler1,2, F Brombacher1,2.   

Abstract

We previously demonstrated that protein kinase C-δ (PKCδ) is critical for immunity against Listeria monocytogenes, Leishmania major, and Candida albicans infection in mice. However, the functional relevance of PKCδ during Mycobacterium tuberculosis (Mtb) infection is unknown. PKCδ was significantly upregulated in whole blood of patients with active tuberculosis (TB) disease. Lung proteomics further revealed that PKCδ was highly abundant in the necrotic and cavitory regions of TB granulomas in multidrug-resistant human participants. In murine Mtb infection studies, PKCδ-/- mice were highly susceptible to tuberculosis with increased mortality, weight loss, exacerbated lung pathology, uncontrolled proinflammatory cytokine responses, and increased mycobacterial burdens. Moreover, these mice displayed a significant reduction in alveolar macrophages, dendritic cells, and decreased accumulation of lipid bodies (lungs and macrophages) and serum fatty acids. Furthermore, a peptide inhibitor of PKCδ in wild-type mice mirrored lung inflammation identical to infected PKCδ-/- mice. Mechanistically, increased bacterial growth in macrophages from PKCδ-/- mice was associated with a decline in killing effector functions independent of phagosome maturation and autophagy. Taken together, these data suggest that PKCδ is a marker of inflammation during active TB disease in humans and required for optimal macrophage killing effector functions and host protection during Mtb infection in mice.

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Year:  2017        PMID: 28832027     DOI: 10.1038/mi.2017.68

Source DB:  PubMed          Journal:  Mucosal Immunol        ISSN: 1933-0219            Impact factor:   7.313


  55 in total

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4.  Characterization of ligand and substrate specificity for the calcium-dependent and calcium-independent protein kinase C isozymes.

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Authors:  Dominikus Strasser; Konstantin Neumann; Hanna Bergmann; Mohlopheni J Marakalala; Reto Guler; Anna Rojowska; Karl-Peter Hopfner; Frank Brombacher; Henning Urlaub; Gottfried Baier; Gordon D Brown; Michael Leitges; Jürgen Ruland
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6.  Mycobacterium indicus pranii supernatant induces apoptotic cell death in mouse peritoneal macrophages in vitro.

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Journal:  PLoS One       Date:  2013-08-05       Impact factor: 3.240

10.  In vivo clearance of surfactant lipids during acute pulmonary inflammation.

Authors:  Jaret L Malloy; Jo Rae Wright
Journal:  Respir Res       Date:  2004-07-23
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2.  Deciphering the Molecular Mechanism Underlying African Animal Trypanosomiasis by Means of the 1000 Bull Genomes Project Genomic Dataset.

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Review 3.  Paradoxical Roles of the MAL/Tirap Adaptor in Pathologies.

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5.  Chronic Granulomatous Disease-Like Presentation of a Child with Autosomal Recessive PKCδ Deficiency.

Authors:  Anna-Lena Neehus; Karen Tuano; Tom Le Voyer; Sarada L Nandiwada; Kruthi Murthy; Anne Puel; Jean-Laurent Casanova; Javier Chinen; Jacinta Bustamante
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Review 6.  The role of lipocalin 2 in brain injury and recovery after ischemic and hemorrhagic stroke.

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7.  Monocyte metabolic transcriptional programs associate with resistance to tuberculin skin test/interferon-γ release assay conversion.

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Review 8.  Dectin-1-Syk-CARD9 Signaling Pathway in TB Immunity.

Authors:  Matthew Wagener; J Claire Hoving; Hlumani Ndlovu; Mohlopheni J Marakalala
Journal:  Front Immunol       Date:  2018-02-13       Impact factor: 7.561

  8 in total

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