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Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding

The first step of cellular entry for the human immunodeficiency virus type-1 (HIV-1) occurs through the binding of its envelope protein (Env) with the plasma membrane receptor CD4 and co-receptor CCR5 or CXCR4 on susceptible cells, primarily CD4(+) T cells and macrophages. Although there is consider...

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Autores principales: Yuan, Yue, Jacobs, Caron A., Llorente Garcia, Isabel, Pereira, Pedro M., Lawrence, Scott P., Laine, Romain F., Marsh, Mark, Henriques, Ricardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7835772/
https://www.ncbi.nlm.nih.gov/pubmed/33478139
http://dx.doi.org/10.3390/v13010142
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author Yuan, Yue
Jacobs, Caron A.
Llorente Garcia, Isabel
Pereira, Pedro M.
Lawrence, Scott P.
Laine, Romain F.
Marsh, Mark
Henriques, Ricardo
author_facet Yuan, Yue
Jacobs, Caron A.
Llorente Garcia, Isabel
Pereira, Pedro M.
Lawrence, Scott P.
Laine, Romain F.
Marsh, Mark
Henriques, Ricardo
author_sort Yuan, Yue
collection PubMed
description The first step of cellular entry for the human immunodeficiency virus type-1 (HIV-1) occurs through the binding of its envelope protein (Env) with the plasma membrane receptor CD4 and co-receptor CCR5 or CXCR4 on susceptible cells, primarily CD4(+) T cells and macrophages. Although there is considerable knowledge of the molecular interactions between Env and host cell receptors that lead to successful fusion, the precise way in which HIV-1 receptors redistribute to sites of virus binding at the nanoscale remains unknown. Here, we quantitatively examine changes in the nanoscale organisation of CD4 on the surface of CD4(+) T cells following HIV-1 binding. Using single-molecule super-resolution imaging, we show that CD4 molecules are distributed mostly as either individual molecules or small clusters of up to 4 molecules. Following virus binding, we observe a local 3-to-10-fold increase in cluster diameter and molecule number for virus-associated CD4 clusters. Moreover, a similar but smaller magnitude reorganisation of CD4 was also observed with recombinant gp120. For one of the first times, our results quantify the nanoscale CD4 reorganisation triggered by HIV-1 on host CD4(+) T cells. Our quantitative approach provides a robust methodology for characterising the nanoscale organisation of plasma membrane receptors in general with the potential to link spatial organisation to function.
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spelling pubmed-78357722021-01-27 Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding Yuan, Yue Jacobs, Caron A. Llorente Garcia, Isabel Pereira, Pedro M. Lawrence, Scott P. Laine, Romain F. Marsh, Mark Henriques, Ricardo Viruses Article The first step of cellular entry for the human immunodeficiency virus type-1 (HIV-1) occurs through the binding of its envelope protein (Env) with the plasma membrane receptor CD4 and co-receptor CCR5 or CXCR4 on susceptible cells, primarily CD4(+) T cells and macrophages. Although there is considerable knowledge of the molecular interactions between Env and host cell receptors that lead to successful fusion, the precise way in which HIV-1 receptors redistribute to sites of virus binding at the nanoscale remains unknown. Here, we quantitatively examine changes in the nanoscale organisation of CD4 on the surface of CD4(+) T cells following HIV-1 binding. Using single-molecule super-resolution imaging, we show that CD4 molecules are distributed mostly as either individual molecules or small clusters of up to 4 molecules. Following virus binding, we observe a local 3-to-10-fold increase in cluster diameter and molecule number for virus-associated CD4 clusters. Moreover, a similar but smaller magnitude reorganisation of CD4 was also observed with recombinant gp120. For one of the first times, our results quantify the nanoscale CD4 reorganisation triggered by HIV-1 on host CD4(+) T cells. Our quantitative approach provides a robust methodology for characterising the nanoscale organisation of plasma membrane receptors in general with the potential to link spatial organisation to function. MDPI 2021-01-19 /pmc/articles/PMC7835772/ /pubmed/33478139 http://dx.doi.org/10.3390/v13010142 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yuan, Yue
Jacobs, Caron A.
Llorente Garcia, Isabel
Pereira, Pedro M.
Lawrence, Scott P.
Laine, Romain F.
Marsh, Mark
Henriques, Ricardo
Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding
title Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding
title_full Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding
title_fullStr Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding
title_full_unstemmed Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding
title_short Single-Molecule Super-Resolution Imaging of T-Cell Plasma Membrane CD4 Redistribution upon HIV-1 Binding
title_sort single-molecule super-resolution imaging of t-cell plasma membrane cd4 redistribution upon hiv-1 binding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7835772/
https://www.ncbi.nlm.nih.gov/pubmed/33478139
http://dx.doi.org/10.3390/v13010142
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