Early steps of multi-receptor viral interactions dissected by high-density, multi-color single molecule mapping in living cells
Mateos, N.; Gutierrez-Martinez, E.; Angulo-Capel, J.; Carlon-Andres, I.; Padilla-Parra, S.; Garcia-Parajo, M.; Torreno-Pina, J. A.
Show abstract
Direct visualization of the early steps of multi-receptor viral interactions at the singlemolecule level has been largely impeded by the technical challenges associated to imaging individual multi-molecular systems at relevant spatial (nanometer) and temporal (millisecond) scales. Here, we present a four-color, high-density single-molecule spatiotemporal mapping methodology to capture real-time interactions between individual viruses and three different viral (co-)receptors on the membrane of living immune cells derived from donors. Together with quantitative tools, our approach revealed the existence of a coordinated spatiotemporal diffusion of the three different (co-)receptors prior to viral-engagement. By varying the temporal-windows of cumulated single-molecule localizations, we discovered that such a concerted diffusion impacts on the residence time of viruses on the host membrane and potential viral infectivity. Overall, our methodology opens a new door to the systematic analysis of the initial steps of viralhost interactions and paves the way to the investigation of other multi-molecular systems at the single-molecule level.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Human ESCRT-III Polymers Assemble on Positively Curved Membranes and Induce Helical Membrane Tube Formation 96%
- SpeedyTrack: Direct microsecond wide-field single-molecule tracking and super-resolution mapping via CCD vertical shift 96%
- The uptake of small extracellular vesicles by recipient cells is facilitated by paracrine adhesion signaling 96%
Similar papers in this journal
Similar papers in this journal
- Proximity-assisted photoactivation (PAPA): Detecting molecular interactions in live-cell single-molecule imaging 95%
- Transformer-based spatial-temporal detection of apoptotic cell death in live-cell imaging. 95%
- Actin-regulated Siglec-1 nanoclustering influences HIV-1 capture and virus-containing compartment formation in dendritic cells 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.