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Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production

Surfactant Protein SP-D, a member of the collectin family, is a pattern recognition protein, secreted by mucosal epithelial cells and has an important role in innate immunity against various pathogens. In this study, we confirm that native human SP-D and a recombinant fragment of human SP-D (rhSP-D)...

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Autores principales: Pandit, Hrishikesh, Gopal, Sandhya, Sonawani, Archana, Yadav, Ajit Kumar, Qaseem, Asif S., Warke, Himangi, Patil, Anushree, Gajbhiye, Rahul, Kulkarni, Vijay, Al-Mozaini, Maha Ahmed, Idicula-Thomas, Susan, Kishore, Uday, Madan, Taruna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4103819/
https://www.ncbi.nlm.nih.gov/pubmed/25036364
http://dx.doi.org/10.1371/journal.pone.0102395
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author Pandit, Hrishikesh
Gopal, Sandhya
Sonawani, Archana
Yadav, Ajit Kumar
Qaseem, Asif S.
Warke, Himangi
Patil, Anushree
Gajbhiye, Rahul
Kulkarni, Vijay
Al-Mozaini, Maha Ahmed
Idicula-Thomas, Susan
Kishore, Uday
Madan, Taruna
author_facet Pandit, Hrishikesh
Gopal, Sandhya
Sonawani, Archana
Yadav, Ajit Kumar
Qaseem, Asif S.
Warke, Himangi
Patil, Anushree
Gajbhiye, Rahul
Kulkarni, Vijay
Al-Mozaini, Maha Ahmed
Idicula-Thomas, Susan
Kishore, Uday
Madan, Taruna
author_sort Pandit, Hrishikesh
collection PubMed
description Surfactant Protein SP-D, a member of the collectin family, is a pattern recognition protein, secreted by mucosal epithelial cells and has an important role in innate immunity against various pathogens. In this study, we confirm that native human SP-D and a recombinant fragment of human SP-D (rhSP-D) bind to gp120 of HIV-1 and significantly inhibit viral replication in vitro in a calcium and dose-dependent manner. We show, for the first time, that SP-D and rhSP-D act as potent inhibitors of HIV-1 entry in to target cells and block the interaction between CD4 and gp120 in a dose-dependent manner. The rhSP-D-mediated inhibition of viral replication was examined using three clinical isolates of HIV-1 and three target cells: Jurkat T cells, U937 monocytic cells and PBMCs. HIV-1 induced cytokine storm in the three target cells was significantly suppressed by rhSP-D. Phosphorylation of key kinases p38, Erk1/2 and AKT, which contribute to HIV-1 induced immune activation, was significantly reduced in vitro in the presence of rhSP-D. Notably, anti-HIV-1 activity of rhSP-D was retained in the presence of biological fluids such as cervico-vaginal lavage and seminal plasma. Our study illustrates the multi-faceted role of human SP-D against HIV-1 and potential of rhSP-D for immunotherapy to inhibit viral entry and immune activation in acute HIV infection.
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spelling pubmed-41038192014-07-21 Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production Pandit, Hrishikesh Gopal, Sandhya Sonawani, Archana Yadav, Ajit Kumar Qaseem, Asif S. Warke, Himangi Patil, Anushree Gajbhiye, Rahul Kulkarni, Vijay Al-Mozaini, Maha Ahmed Idicula-Thomas, Susan Kishore, Uday Madan, Taruna PLoS One Research Article Surfactant Protein SP-D, a member of the collectin family, is a pattern recognition protein, secreted by mucosal epithelial cells and has an important role in innate immunity against various pathogens. In this study, we confirm that native human SP-D and a recombinant fragment of human SP-D (rhSP-D) bind to gp120 of HIV-1 and significantly inhibit viral replication in vitro in a calcium and dose-dependent manner. We show, for the first time, that SP-D and rhSP-D act as potent inhibitors of HIV-1 entry in to target cells and block the interaction between CD4 and gp120 in a dose-dependent manner. The rhSP-D-mediated inhibition of viral replication was examined using three clinical isolates of HIV-1 and three target cells: Jurkat T cells, U937 monocytic cells and PBMCs. HIV-1 induced cytokine storm in the three target cells was significantly suppressed by rhSP-D. Phosphorylation of key kinases p38, Erk1/2 and AKT, which contribute to HIV-1 induced immune activation, was significantly reduced in vitro in the presence of rhSP-D. Notably, anti-HIV-1 activity of rhSP-D was retained in the presence of biological fluids such as cervico-vaginal lavage and seminal plasma. Our study illustrates the multi-faceted role of human SP-D against HIV-1 and potential of rhSP-D for immunotherapy to inhibit viral entry and immune activation in acute HIV infection. Public Library of Science 2014-07-18 /pmc/articles/PMC4103819/ /pubmed/25036364 http://dx.doi.org/10.1371/journal.pone.0102395 Text en © 2014 Pandit et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Pandit, Hrishikesh
Gopal, Sandhya
Sonawani, Archana
Yadav, Ajit Kumar
Qaseem, Asif S.
Warke, Himangi
Patil, Anushree
Gajbhiye, Rahul
Kulkarni, Vijay
Al-Mozaini, Maha Ahmed
Idicula-Thomas, Susan
Kishore, Uday
Madan, Taruna
Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production
title Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production
title_full Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production
title_fullStr Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production
title_full_unstemmed Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production
title_short Surfactant Protein D Inhibits HIV-1 Infection of Target Cells via Interference with gp120-CD4 Interaction and Modulates Pro-Inflammatory Cytokine Production
title_sort surfactant protein d inhibits hiv-1 infection of target cells via interference with gp120-cd4 interaction and modulates pro-inflammatory cytokine production
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4103819/
https://www.ncbi.nlm.nih.gov/pubmed/25036364
http://dx.doi.org/10.1371/journal.pone.0102395
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