The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.

Secretory leukocyte protease inhibitor (SLPI) is secreted by epithelial cells in all the mucosal fluids such as saliva, cervical mucus, as well in the seminal liquid. At the physiological concentrations found in saliva, SLPI has a specific antiviral activity against HIV-1 that is related to the pert...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Bénédicte Py, Stéphane Basmaciogullari, Jérôme Bouchet, Marion Zarka, Ivan C Moura, Marc Benhamou, Renato C Monteiro, Hakim Hocini, Ricardo Madrid, Serge Benichou
Formato: article
Lenguaje:EN
Publicado: Public Library of Science (PLoS) 2009
Materias:
R
Q
Acceso en línea:https://doaj.org/article/62536fbb5ecb4d63b0437e78f24e8433
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:62536fbb5ecb4d63b0437e78f24e8433
record_format dspace
spelling oai:doaj.org-article:62536fbb5ecb4d63b0437e78f24e84332021-11-25T06:16:27ZThe phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.1932-620310.1371/journal.pone.0005006https://doaj.org/article/62536fbb5ecb4d63b0437e78f24e84332009-01-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/19333378/?tool=EBIhttps://doaj.org/toc/1932-6203Secretory leukocyte protease inhibitor (SLPI) is secreted by epithelial cells in all the mucosal fluids such as saliva, cervical mucus, as well in the seminal liquid. At the physiological concentrations found in saliva, SLPI has a specific antiviral activity against HIV-1 that is related to the perturbation of the virus entry process at a stage posterior to the interaction of the viral surface glycoprotein with the CD4 receptor. Here, we confirm that recombinant SLPI is able to inhibit HIV-1 infection of primary T lymphocytes, and show that SLPI can also inhibit the transfer of HIV-1 virions from primary monocyte-derived dendritic cells to autologous T lymphocytes. At the molecular level, we show that SLPI is a ligand for the phospholipid scramblase 1 (PLSCR1) and PLSCR4, membrane proteins that are involved in the regulation of the movements of phospholipids between the inner and outer leaflets of the plasma membrane. Interestingly, we reveal that PLSCR1 and PLSCR4 also interact directly with the CD4 receptor at the cell surface of T lymphocytes. We find that the same region of the cytoplasmic domain of PLSCR1 is involved in the binding to CD4 and SLPI. Since SLPI was able to disrupt the association between PLSCR1 and CD4, our data suggest that SLPI inhibits HIV-1 infection by modulating the interaction of the CD4 receptor with PLSCRs. These interactions may constitute new targets for antiviral intervention.Bénédicte PyStéphane BasmaciogullariJérôme BouchetMarion ZarkaIvan C MouraMarc BenhamouRenato C MonteiroHakim HociniRicardo MadridSerge BenichouPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 4, Iss 3, p e5006 (2009)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Bénédicte Py
Stéphane Basmaciogullari
Jérôme Bouchet
Marion Zarka
Ivan C Moura
Marc Benhamou
Renato C Monteiro
Hakim Hocini
Ricardo Madrid
Serge Benichou
The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.
description Secretory leukocyte protease inhibitor (SLPI) is secreted by epithelial cells in all the mucosal fluids such as saliva, cervical mucus, as well in the seminal liquid. At the physiological concentrations found in saliva, SLPI has a specific antiviral activity against HIV-1 that is related to the perturbation of the virus entry process at a stage posterior to the interaction of the viral surface glycoprotein with the CD4 receptor. Here, we confirm that recombinant SLPI is able to inhibit HIV-1 infection of primary T lymphocytes, and show that SLPI can also inhibit the transfer of HIV-1 virions from primary monocyte-derived dendritic cells to autologous T lymphocytes. At the molecular level, we show that SLPI is a ligand for the phospholipid scramblase 1 (PLSCR1) and PLSCR4, membrane proteins that are involved in the regulation of the movements of phospholipids between the inner and outer leaflets of the plasma membrane. Interestingly, we reveal that PLSCR1 and PLSCR4 also interact directly with the CD4 receptor at the cell surface of T lymphocytes. We find that the same region of the cytoplasmic domain of PLSCR1 is involved in the binding to CD4 and SLPI. Since SLPI was able to disrupt the association between PLSCR1 and CD4, our data suggest that SLPI inhibits HIV-1 infection by modulating the interaction of the CD4 receptor with PLSCRs. These interactions may constitute new targets for antiviral intervention.
format article
author Bénédicte Py
Stéphane Basmaciogullari
Jérôme Bouchet
Marion Zarka
Ivan C Moura
Marc Benhamou
Renato C Monteiro
Hakim Hocini
Ricardo Madrid
Serge Benichou
author_facet Bénédicte Py
Stéphane Basmaciogullari
Jérôme Bouchet
Marion Zarka
Ivan C Moura
Marc Benhamou
Renato C Monteiro
Hakim Hocini
Ricardo Madrid
Serge Benichou
author_sort Bénédicte Py
title The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.
title_short The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.
title_full The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.
title_fullStr The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.
title_full_unstemmed The phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with CD4 at the plasma membrane.
title_sort phospholipid scramblases 1 and 4 are cellular receptors for the secretory leukocyte protease inhibitor and interact with cd4 at the plasma membrane.
publisher Public Library of Science (PLoS)
publishDate 2009
url https://doaj.org/article/62536fbb5ecb4d63b0437e78f24e8433
work_keys_str_mv AT benedictepy thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT stephanebasmaciogullari thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT jeromebouchet thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT marionzarka thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT ivancmoura thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT marcbenhamou thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT renatocmonteiro thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT hakimhocini thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT ricardomadrid thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT sergebenichou thephospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT benedictepy phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT stephanebasmaciogullari phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT jeromebouchet phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT marionzarka phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT ivancmoura phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT marcbenhamou phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT renatocmonteiro phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT hakimhocini phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT ricardomadrid phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
AT sergebenichou phospholipidscramblases1and4arecellularreceptorsforthesecretoryleukocyteproteaseinhibitorandinteractwithcd4attheplasmamembrane
_version_ 1718413986772287488