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1. Regulation of Viral Restriction by Post-Translational Modifications

2. From Cells to Virus Particles: Quantitative Methods to Monitor RNA Packaging

3. MoMuLV and HIV-1 nucleocapsid proteins have a common role in genomic RNA packaging but different in late reverse transcription.

4. Regulation of Viral Restriction by Post-Translational Modifications

5. Alarmin S100A9 restricts retroviral infection by limiting reverse transcription in human dendritic cells

6. Nanoscale organization of tetraspanins during HIV-1 budding by correlative dSTORM/AFM

7. NXF1 and CRM1 nuclear export pathways orchestrate nuclear export, translation and packaging of murine leukaemia retrovirus unspliced RNA

8. TRIM8 is required for virus-induced IFN response in human plasmacytoid dendritic cells

9. Transportin-1 binds to the HIV-1 capsid via a nuclear localization signal and triggers uncoating

10. HIV-1 specifically traps CD9 and CD81 tetraspanins within viral buds and induces their membrane depletion

11. Sensing of HIV-1 Entry Triggers a Type I Interferon Response in Human Primary Macrophages

12. From Cells to Virus Particles: Quantitative Methods to Monitor RNA Packaging

13. Requirements for nucleocapsid-mediated regulation of reverse transcription during the late steps of HIV-1 assembly

14. Imaging HIV-1 RNA dimerization in cells by multicolor super-resolution and fluctuation microscopies

15. Role of HIV-1 RNA and protein determinants for the selective packaging of spliced and unspliced viral RNA and host U6 and 7SL RNA in virus particles

16. MoMuLV and HIV-1 Nucleocapsid Proteins Have a Common Role in Genomic RNA Packaging but Different in Late Reverse Transcription

17. A new role of the HIV-1 nucleocapsid in the spatiotemporal control of the reverse transcription throughout the virus replication cycle

18. The interaction between the measles virus nucleoprotein and the Interferon Regulator Factor 3 relies on a specific cellular environment

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