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4. A New Derivative of Retro-2 Displays Antiviral Activity against Respiratory Syncytial Virus

5. Hardening of Respiratory Syncytial Virus Inclusion Bodies by Cyclopamine Proceeds through Perturbation of the Interactions of the M2-1 Protein with RNA and the P Protein

6. Respiratory Syncytial Virus Infects Regulatory B Cells in Human Neonates via Chemokine Receptor CX3CR1 and Promotes Lung Disease Severity

9. A New Derivative of Retro-2 Displays Antiviral Activity against Respiratory Syncytial Virus.

11. Depletion of TAX1BP1 Amplifies Innate Immune Responses during Respiratory Syncytial Virus Infection

15. RSV hijacks cellular protein phosphatase 1 to regulate M2-1 phosphorylation and viral transcription

16. How structural order/disorder transitions modulate interactions in RSV phosphoprotein

17. La phosphoprotéine P du Virus Respiratoire Syncytial recrute la protéine phosphatase-1 cellulaire afin de réguler la phosphorylation de M2-1, facteur viral de transcription, ainsi que son activité

18. Vaccine Safety and Efficacy Evaluation of a Recombinant Bovine Respiratory Syncytial Virus (BRSV) with Deletion of the SH Gene and Subunit Vaccines Based On Recombinant Human RSV Proteins: N-nanorings, P and M2-1, in Calves with Maternal Antibodies

19. Recombinant hRSV expressing mCherry or luciferase without fitness alteration

20. Mise au point d’un nouvel outil de génétique inverse pour le Virus Respiratoire Syncytial humain et perspectives

21. Caractérisation d’un site de fixation de la phosphoprotéine sur la nucléocapside du virus respiratoire syncytial: vers l’identification de cibles d’antiviraux

22. Nucleoprotein nanostructures: a mucosal subunit vaccine candidate for neonates protective against the respiratory syncytial virus

23. Nucleoprotein nanostructures: a mucosal subunit vaccine candidate for neonates protective against the respiratory syncytial virus

24. A Druggable Pocket at the Nucleocapsid/Phosphoprotein Interaction Site of Human Respiratory Syncytial Virus

25. Identification and Characterization of the Binding Site of the Respiratory Syncytial Virus Phosphoprotein to RNA-Free Nucleoprotein

26. Interactome Analysis of the Human Respiratory Syncytial Virus RNA Polymerase Complex Identifies Protein Chaperones as Important Cofactors That Promote L-Protein Stability and RNA Synthesis

31. Minimal Elements Required for the Formation of Respiratory Syncytial Virus Cytoplasmic Inclusion Bodies In Vivoand In Vitro

32. Biochemical characterization of the respiratory syncytial virus N0-P complex in solution.

33. RSV hijacks cellular protein phosphatase 1 to regulate M2-1 phosphorylation and viral transcription.

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