Actin-regulated Siglec-1 nanoclustering influences HIV-1 capture and virus-containing compartment formation in dendritic cells

Author:

Gutiérrez-Martínez Enric1,Benet Garrabé Susana2,Mateos Nicolas1,Erkizia Itziar3,Nieto-Garai Jon Ander4ORCID,Lorizate Maier4,Borgman Kyra JE1ORCID,Manzo Carlo5ORCID,Campelo Felix1ORCID,Izquierdo-Useros Nuria367ORCID,Martinez-Picado Javier36789ORCID,Garcia-Parajo Maria F19ORCID

Affiliation:

1. ICFO – Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology

2. Lluita contra la sida foundation, Infectious Diseases Department, Hospital Germans Trias i Pujol

3. IrsiCaixa AIDS Research Institute

4. Department of Biochemistry and Molecular Biology, Universidad del País Vasco

5. Facultat de Ciències i Tecnologia, Universitat de Vic - Universitat Central de Catalunya

6. Germans Trias i Pujol Research Institute (IGTP)

7. CIBER de enfermedades infecciosas

8. AIDS and Related Illnesses, Centre for Health and Social Care Research (CESS), Faculty of Medicine, University of Vic - Central University of Catalonia

9. ICREA

Abstract

The immunoglobulin-like lectin receptor CD169 (Siglec-1) mediates the capture of HIV-1 by activated dendritic cells (DCs) through binding to sialylated ligands. These interactions result in a more efficient virus capture as compared to resting DCs, although the underlying mechanisms are poorly understood. Using a combination of super-resolution microscopy, single-particle tracking and biochemical perturbations we studied the nanoscale organization of Siglec-1 on activated DCs and its impact on viral capture and its trafficking to a single viral-containing compartment. We found that activation of DCs leads to Siglec-1 basal nanoclustering at specific plasma membrane regions where receptor diffusion is constrained by Rho-ROCK activation and formin-dependent actin polymerization. Using liposomes with varying ganglioside concentrations, we further demonstrate that Siglec-1 nanoclustering enhances the receptor avidity to limiting concentrations of gangliosides carrying sialic ligands. Binding to either HIV-1 particles or ganglioside-bearing liposomes lead to enhanced Siglec-1 nanoclustering and global actin rearrangements characterized by a drop in RhoA activity, facilitating the final accumulation of viral particles in a single sac-like compartment. Overall, our work provides new insights on the role of the actin machinery of activated DCs in regulating the formation of basal Siglec-1 nanoclustering, being decisive for the capture and actin-dependent trafficking of HIV-1 into the virus-containing compartment.

Funder

European Research Council

European Commission

Spanish National Plan for Scientific and Technical Research and Innovation

Generalitat de Catalunya

FUNDACIÓ Privada MIR-PUIG

Fundación Cellex

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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