HIV-1 envelope glycoprotein modulates CXCR4 clustering and dynamics on the T cell membrane.
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2026
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eLife Sciences Publications Ltd.
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Quijada-Freire A, Santiago CA, García-Cuesta EM, Soler Palacios B, Ayala-Bueno R, Gardeta SR, San Sebastian E, Armendariz-Burgoa E, Puertas MC, Villares R, Garaigorta U, González-Granado LI, Rodriguez Frade JM, Chojnacki J, Martinez-Picado J, Mellado M. HIV-1 envelope glycoprotein modulates CXCR4 clustering and dynamics on the T cell membrane. eLife. 2026;15:RP110354. doi: 10.7554/eLife.110354. PMCID: PMC13167113.
Abstract
HIV-1 entry into susceptible cells requires the dynamic interaction of its envelope (Env) glycoprotein with the host cell receptor CD4 and a co-receptor, either CCR5 or CXCR4. While the core molecular mechanisms driving Env-receptor interactions and subsequent membrane fusion are well characterized, the precise nanoscale spatial reorganization of these co-receptors at the viral binding site remains poorly defined. In this study, we employed single-particle tracking total internal reflection fluorescence (SPT-TIRF) microscopy to quantitatively analyze nanoscale organizational changes of CXCR4 on the surface of human CD4 T cells following binding by X4-tropic HIV-1. Our data reveal that both recombinant X4-gp120 and virus-like particles expressing physiological levels of X4 Env proteins (gp120 and gp41) promote CXCR4 clustering, a phenomenon linked to cell infection. Furthermore, these ligands induced oligomerization of CXCR4, a naturally occurring mutant associated with WHIM syndrome that supports HIV-1 infection, but fails to oligomerize in response to CXCL12. Our findings establish a link between CXCR4 clustering and HIV-1 infection, enhancing our understanding of the initial events in viral attachment and entry. These results further suggest that HIV-1 depends on a specific spatial arrangement of co-receptors, distinct from that induced by their natural chemokine ligands, highlighting the critical role of cell-surface receptor spatial organization in dictating cellular function.
Description
Artículo de acceso abierto publicado en eLife bajo licencia Creative Commons Attribution. La aportación demuestra que la glicoproteína Env del VIH-1 reorganiza la superficie de los linfocitos T CD4+ mediante agrupamiento específico de CD4 y CXCR4, generando una configuración favorable para la entrada viral. Luis Ignacio González-Granado participa como coautor clínico-inmunológico, aportando la interpretación traslacional de los hallazgos relacionados con CXCR4 y su conexión con el síndrome WHIM, enfermedad rara causada por mutaciones de este receptor. El trabajo conecta biología de membrana, virología e inmunodeficiencias primarias, y ha tenido impacto divulgativo mediante nota de prensa institucional de la Comunidad de Madrid.







