Literature DB >> 26355912

Galectins regulate the inflammatory response in airway epithelial cells exposed to microbial neuraminidase by modulating the expression of SOCS1 and RIG1.

Mihai Nita-Lazar1, Aditi Banerjee1, Chiguang Feng1, Gerardo R Vasta2.   

Abstract

Influenza patients frequently display increased susceptibility to Streptococcus pneumoniae co-infection and sepsis, the prevalent cause of mortality during influenza pandemics. However, the detailed mechanisms by which an influenza infection predisposes patients to suffer pneumococcal pneumonia are not fully understood. A murine model for influenza infection closely reflects the observations in human patients, since if the animals that have recovered from influenza A virus (IAV) sublethal infection are challenged with S. pneumoniae, they undergo a usually fatal uncontrolled cytokine response. We have previously demonstrated both in vitro and in vivo that the expression and secretion of galectin-1 (Gal1) and galectin-3 (Gal3) are modulated during IAV infection, and that the viral neuraminidase unmasks galactosyl moieties in the airway epithelia. In this study we demonstrate in vitro that the binding of secreted Gal1 and Gal3 to the epithelial cell surface modulates the expression of SOCS1 and RIG1, and activation of ERK, AKT or JAK/STAT1 signaling pathways, leading to a disregulated expression and release of pro-inflammatory cytokines. Our results suggest that the activity of the viral and pneumococcal neuraminidases on the surface of the airway epithelial cells function as a "danger signal" that leads to rapid upregulation of SOCS1 expression to prevent an uncontrolled inflammatory response. The binding of extracellular Gal1 or Gal3 to the galactosyl moieties unmasked on the surface of airway epithelial cells can either "fine-tune" or severely disregulate this process, respectively, the latter potentially leading to hypercytokinemia.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Chemokines; Cytokines; Galectin; Neuraminidase; RIG1; SOCS; Signaling pathway

Mesh:

Substances:

Year:  2015        PMID: 26355912      PMCID: PMC4624043          DOI: 10.1016/j.molimm.2015.08.005

Source DB:  PubMed          Journal:  Mol Immunol        ISSN: 0161-5890            Impact factor:   4.407


  59 in total

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Review 3.  Immunomodulatory functions of type I interferons.

Authors:  José M González-Navajas; Jongdae Lee; Michael David; Eyal Raz
Journal:  Nat Rev Immunol       Date:  2012-01-06       Impact factor: 53.106

Review 4.  Galectin-1: a small protein with major functions.

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Journal:  Glycobiology       Date:  2006-07-13       Impact factor: 4.313

Review 5.  SOCS regulation of the JAK/STAT signalling pathway.

Authors:  Ben A Croker; Hiu Kiu; Sandra E Nicholson
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7.  A model of meningococcal bacteremia after respiratory superinfection in influenza A virus-infected mice.

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Journal:  FEMS Microbiol Lett       Date:  2003-05-16       Impact factor: 2.742

8.  Neuraminidase reprograms lung tissue and potentiates lipopolysaccharide-induced acute lung injury in mice.

Authors:  Chiguang Feng; Lei Zhang; Chinh Nguyen; Stefanie N Vogel; Simeon E Goldblum; William C Blackwelder; Alan S Cross
Journal:  J Immunol       Date:  2013-09-25       Impact factor: 5.422

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Authors:  Ana Clara Monsalvo; Juan P Batalle; M Florencia Lopez; Jens C Krause; Jennifer Klemenc; Johanna Zea Hernandez; Bernardo Maskin; Jimena Bugna; Carlos Rubinstein; Leandro Aguilar; Liliana Dalurzo; Romina Libster; Vilma Savy; Elsa Baumeister; Liliana Aguilar; Graciela Cabral; Julia Font; Liliana Solari; Kevin P Weller; Joyce Johnson; Marcela Echavarria; Kathryn M Edwards; James D Chappell; James E Crowe; John V Williams; Guillermina A Melendi; Fernando P Polack
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10.  The epithelial αvβ3-integrin boosts the MYD88-dependent TLR2 signaling in response to viral and bacterial components.

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  20 in total

Review 1.  Functions of galectins as 'self/non-self'-recognition and effector factors.

Authors:  Gerardo R Vasta; Chiguang Feng; Nuria González-Montalbán; Justin Mancini; Lishi Yang; Kelsey Abernathy; Graeme Frost; Cheyenne Palm
Journal:  Pathog Dis       Date:  2017-07-31       Impact factor: 3.166

2.  Activation of Human Basophils by A549 Lung Epithelial Cells Reveals a Novel IgE-Dependent Response Independent of Allergen.

Authors:  John T Schroeder; Anja P Bieneman
Journal:  J Immunol       Date:  2017-06-26       Impact factor: 5.422

3.  Influenza Virus Neuraminidase Engages CD83 and Promotes Pulmonary Injury.

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4.  Galectin-1 promotes an M2 macrophage response to polydioxanone scaffolds.

Authors:  Daniel Abebayehu; Andrew Spence; Barbara D Boyan; Zvi Schwartz; John J Ryan; Michael J McClure
Journal:  J Biomed Mater Res A       Date:  2017-06-15       Impact factor: 4.396

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6.  Glycosylation-dependent galectin-receptor interactions promote Chlamydia trachomatis infection.

Authors:  Agustin L Lujan; Diego O Croci; Julián A Gambarte Tudela; Antonella D Losinno; Alejandro J Cagnoni; Karina V Mariño; María T Damiani; Gabriel A Rabinovich
Journal:  Proc Natl Acad Sci U S A       Date:  2018-06-11       Impact factor: 11.205

Review 7.  Manipulating Galectin Expression in Zebrafish (Danio rerio).

Authors:  Chiguang Feng; Mihai Nita-Lazar; Nuria González-Montalbán; Jingyu Wang; Justin Mancini; Sheng Wang; Chinnarajan Ravindran; Hafiz Ahmed; Gerardo R Vasta
Journal:  Methods Mol Biol       Date:  2022

8.  Structure of the zebrafish galectin-1-L2 and model of its interaction with the infectious hematopoietic necrosis virus (IHNV) envelope glycoprotein.

Authors:  Anita Ghosh; Aditi Banerjee; L Mario Amzel; Gerardo R Vasta; Mario A Bianchet
Journal:  Glycobiology       Date:  2019-05-01       Impact factor: 5.954

9.  Human primary airway epithelial cells isolated from active smokers have epigenetically impaired antiviral responses.

Authors:  Wenxin Wu; Wei Zhang; J Leland Booth; David C Hutchings; Xiaoqiu Wang; Vicky L White; Houssein Youness; Cory D Cross; Ming-Hui Zou; Dennis Burian; Jordan P Metcalf
Journal:  Respir Res       Date:  2016-09-07

Review 10.  The Antiviral Role of Galectins toward Influenza A Virus Infection-An Alternative Strategy for Influenza Therapy.

Authors:  Chih-Yen Lin; Zih-Syuan Yang; Wen-Hung Wang; Aspiro Nayim Urbina; Yu-Ting Lin; Jason C Huang; Fu-Tong Liu; Sheng-Fan Wang
Journal:  Pharmaceuticals (Basel)       Date:  2021-05-20
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