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1. Mechanisms of recalcitrant fucoidan breakdown in marine Planctomycetota

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

3. Identification of a New Cholesterol‐Binding Site within the IFN‐γ Receptor that is Required for Signal Transduction

4. Cholesterol in the Viral Membrane is a Molecular Switch Governing HIV‐1 Env Clustering

5. Novel Methodology for the Detection of Enveloped Viruses

6. Lipidomimetic Compounds Act as HIV-1 Entry Inhibitors by Altering Viral Membrane Structure

7. HIV-1 capture and transmission by dendritic cells: the role of viral glycolipids and the cellular receptor Siglec-1.

8. Siglec-1 is a novel dendritic cell receptor that mediates HIV-1 trans-infection through recognition of viral membrane gangliosides.

9. Recognition of membrane-bound fusion-peptide/MPER complexes by the HIV-1 neutralizing 2F5 antibody: implications for anti-2F5 immunogenicity.

10. Sialyllactose in viral membrane gangliosides is a novel molecular recognition pattern for mature dendritic cell capture of HIV-1.

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

13. Role of Protein-Lipid Interactions in Viral Entry

14. Raman Spectroscopy as a Tool to Study the Pathophysiology of Brain Diseases

15. Super-Resolution Microscopy to Study Interorganelle Contact Sites

16. Shedding light on membrane rafts structure and dynamics in living cells

17. Super-Resolution Microscopy Using a Bioorthogonal-Based Cholesterol Probe Provides Unprecedented Capabilities for Imaging Nanoscale Lipid Heterogeneity in Living Cells

18. Cholesterol in the Viral Membrane is a Molecular Switch Governing HIV‐1 Env Clustering

19. Fast SARS-CoV-2 detection protocol based on RNA precipitation and RT-qPCR in nasopharyngeal swab samples

20. GIBaren kontrako tratamendua. Berrikuspen historikoa

21. Proteoliposomal formulations of an HIV-1 gp41-based miniprotein elicit a lipid-dependent immunodominant response overlapping the 2F5 binding motif

22. Comparative lipidomics analysis of HIV-1 particles and their producer cell membrane in different cell lines

23. Functional organization of the HIV lipid envelope

24. A new paradigm in molecular recognition? specific antibody binding to membrane-inserted HIV-1 epitopes

25. PI(4,5)P2 Degradation Promotes the Formation of Cytoskeleton-Free Model Membrane Systems

26. Poliovirus 2b insertion into lipid monolayers and pore formation in vesicles modulated by anionic phospholipids

27. Interfacial pre-transmembrane domains in viral proteins promoting membrane fusion and fission

29. Membrane-transferring Sequences of the HIV-1 Gp41 Ectodomain Assemble into an Immunogenic Complex

30. Specific phospholipid recognition by human immunodeficiency virus type-1 neutralizing anti-gp41 2F5 antibody

31. Sphingomyelin and Cholesterol Promote HIV-1 gp41 Pretransmembrane Sequence Surface Aggregation and Membrane Restructuring

32. Recognition of Membrane-Bound Fusion-Peptide/MPER Complexes by the HIV-1 Neutralizing 2F5 Antibody: Implications for Anti-2F5 Immunogenicity

33. Comparative lipidomics analysis of HIV-1 particles and their producer cell membrane in different cell lines

34. How HIV Sneaks aboard Mature Dendritic Cells

35. Membrane-transferring regions of gp41 as targets for HIV-1 fusion inhibition and viral neutralization

36. Probing HIV-1 membrane liquid order by Laurdan staining reveals producer cell-dependent differences

37. The broadly neutralizing anti-human immunodeficiency virus type 1 4E10 monoclonal antibody is better adapted to membrane-bound epitope recognition and blocking than 2F5

38. Structural analysis and assembly of the HIV-1 Gp41 amino-terminal fusion peptide and the pretransmembrane amphipathic-at-interface sequence

39. Membrane association and epitope recognition by HIV-1 neutralizing anti-gp41 2F5 and 4E10 antibodies

40. Recognition and blocking of HIV-1 gp41 pre-transmembrane sequence by monoclonal 4E10 antibody in a Raft-like membrane environment

41. Role of Lipids in Virus Replication

42. Lipid modulation of membrane-bound epitope recognition and blocking by HIV-1 neutralizing antibodies

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