Literature DB >> 21699642

Plasmodium falciparum soluble extracts potentiate the suppressive function of polyclonal T regulatory cells through activation of TGFβ-mediated signals.

AnnMaria Clemente1, Roberto Caporale, Anna Rosa Sannella, Giancarlo Majori, Carlo Severini, Giulia Fadigati, Domenico Cirelli, Paolo Bonini, Enrico Garaci, Federico Cozzolino, Maria Gabriella Torcia.   

Abstract

Increased numbers of T regulatory cells (Tregs), key mediators of immune homeostasis, were reported in human and murine malaria and it is current opinion that these cells play a role in balancing protective immunity and pathogenesis during infection. However, the mechanisms governing their expansion during malaria infection are not completely defined. In this article we show that soluble extracts of Plasmodium falciparum (PfSEs), but not equivalent preparation of uninfected erythrocytes, induce the differentiation of polyclonally activated CD4(+) cells in Tregs endowed with strong suppressive activity. PfSEs activate latent TGFβ bound on the membrane of Treg cells, thus allowing the cytokine interaction with TGFβ receptor, and inducing Foxp3 gene expression and TGFβ production. The activation of membrane-bound latent TGFβ by PfSEs is significantly reduced by a broad-spectrum metalloproteinases inhibitor with Zn(++) -chelating activity, and completely inhibited by the combined action of such inhibitor and antibodies to a P. falciparum thrombospondin-related adhesive protein (PfTRAP). We conclude that Pf-Zn(++) -dependent proteinases and, to a lesser extent, PfTRAP molecules are involved in the activation of latent TGFβ bound on the membrane of activated Treg cells and suggest that, in malaria infection, this mechanism could contribute to the expansion of Tregs with different antigen specificity.
© 2011 Blackwell Publishing Ltd.

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Year:  2011        PMID: 21699642     DOI: 10.1111/j.1462-5822.2011.01622.x

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


  12 in total

1.  Dendritic cells treated with crude Plasmodium berghei extracts acquire immune-modulatory properties and suppress the development of autoimmune neuroinflammation.

Authors:  Rodolfo Thomé; Luidy K Issayama; Thiago Alves da Costa; Rosária D Gangi; Isadora T Ferreira; Catarina Rapôso; Stefanie C P Lopes; Maria Alice da Cruz Höfling; Fábio T M Costa; Liana Verinaud
Journal:  Immunology       Date:  2014-10       Impact factor: 7.397

2.  Modulation of the immune and inflammatory responses by Plasmodium falciparum schizont extracts: role of myeloid dendritic cells in effector and regulatory functions of CD4+ lymphocytes.

Authors:  Ann Maria Clemente; Giulia Fadigati; Roberto Caporale; Damiano G Marchese; Giuseppe Castronovo; Anna Rosa Sannella; Carlo Severini; Federica Verra; Enrico Garaci; Federico Cozzolino; Maria Gabriella Torcia
Journal:  Infect Immun       Date:  2013-03-18       Impact factor: 3.441

3.  Thrombocytopenia May Mediate Disease Severity in Plasmodium falciparum Malaria Through Reduced Transforming Growth Factor Beta-1 Regulation of Proinflammatory and Anti-inflammatory Cytokines.

Authors:  Benjamin R Hanisch; Paul Bangirana; Robert O Opoka; Gregory S Park; Chandy C John
Journal:  Pediatr Infect Dis J       Date:  2015-07       Impact factor: 2.129

4.  mcr-1 Gene Expression Modulates the Inflammatory Response of Human Macrophages to Escherichia coli.

Authors:  Giorgio Mattiuz; Sabrina Nicolò; Alberto Antonelli; Tommaso Giani; Ilaria Baccani; Antonio Cannatelli; Ann Maria Clemente; Giuseppe Castronovo; Michele Tanturli; Federico Cozzolino; Gian Maria Rossolini; Maria Gabriella Torcia
Journal:  Infect Immun       Date:  2020-07-21       Impact factor: 3.441

5.  Decline of FoxP3+ Regulatory CD4 T Cells in Peripheral Blood of Children Heavily Exposed to Malaria.

Authors:  Michelle J Boyle; Prasanna Jagannathan; Lila A Farrington; Ijeoma Eccles-James; Samuel Wamala; Tara I McIntyre; Hilary M Vance; Katherine Bowen; Felistas Nankya; Ann Auma; Mayimuna Nalubega; Esther Sikyomu; Kate Naluwu; John Rek; Agaba Katureebe; Victor Bigira; James Kapisi; Jordan Tappero; Mary K Muhindo; Bryan Greenhouse; Emmanuel Arinaitwe; Grant Dorsey; Moses R Kamya; Margaret E Feeney
Journal:  PLoS Pathog       Date:  2015-07-16       Impact factor: 6.823

6.  Differences in Inflammatory Response Induced by Two Representatives of Clades of the Pandemic ST258 Klebsiella pneumoniae Clonal Lineage Producing KPC-Type Carbapenemases.

Authors:  Giuseppe Castronovo; Ann Maria Clemente; Alberto Antonelli; Marco Maria D'Andrea; Michele Tanturli; Eloisa Perissi; Sara Paccosi; Astrid Parenti; Federico Cozzolino; Gian Maria Rossolini; Maria Gabriella Torcia
Journal:  PLoS One       Date:  2017-01-12       Impact factor: 3.240

7.  Freeze-thaw lysates of Plasmodium falciparum-infected red blood cells induce differentiation of functionally competent regulatory T cells from memory T cells.

Authors:  Olivia C Finney; Emma Lawrence; Alice P Gray; Madi Njie; Eleanor M Riley; Michael Walther
Journal:  Eur J Immunol       Date:  2012-07       Impact factor: 5.532

8.  Infants' Peripheral Blood Lymphocyte Composition Reflects Both Maternal and Post-Natal Infection with Plasmodium falciparum.

Authors:  Odilon Nouatin; Komi Gbédandé; Samad Ibitokou; Bertin Vianou; Parfait Houngbegnon; Sem Ezinmegnon; Sophie Borgella; Carine Akplogan; Gilles Cottrell; Stefania Varani; Achille Massougbodji; Kabirou Moutairou; Marita Troye-Blomberg; Philippe Deloron; Adrian J F Luty; Nadine Fievet
Journal:  PLoS One       Date:  2015-11-18       Impact factor: 3.240

9.  Plasmodium falciparum induces Foxp3hi CD4 T cells independent of surface PfEMP1 expression via small soluble parasite components.

Authors:  Anja Scholzen; Brian M Cooke; Magdalena Plebanski
Journal:  Front Microbiol       Date:  2014-05-01       Impact factor: 5.640

Review 10.  Targeting regulatory T cells to improve vaccine immunogenicity in early life.

Authors:  Jorjoh Ndure; Katie L Flanagan
Journal:  Front Microbiol       Date:  2014-09-11       Impact factor: 5.640

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