23 results on '"Luban, Jeremy"'
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2. HERV-H RNA is abundant in human embryonic stem cells and a precise marker for pluripotency
3. Inhibition of HIV-1 infection by TNPO3 depletion is determined by capsid and detectable after viral cDNA enters the nucleus
4. TRIM5α associates with proteasomal subunits in cells while in complex with HIV-1 virions
5. Vpx rescues HIV-1 transduction of dendritic cells from the antiviral state established by type 1 interferon
6. TRIM5α selectively binds a restriction-sensitive retroviral capsid
7. HIV-1 capsid is involved in post-nuclear entry steps
8. Gammaretroviral pol sequences act in cis to direct polysome loading and NXF1/NXT-dependent protein production by gag-encoded RNA
9. Vpx rescue of HIV-1 from the antiviral state in mature dendritic cells is independent of the intracellular deoxynucleotide concentration
10. Cyclophilin A promotes HIV-1 reverse transcription but its effect on transduction correlates best with its effect on nuclear entry of viral cDNA
11. Identifying features of the lentiviral genome crucial for the establishment of latency
12. Vpx rescue of HIV-1 from the antiviral state is independent of the intracellular nucleotide concentration
13. HIV-1 uncoating in human CD4+ T cells: kinetic and functional analyses
14. Lv4, an activity that restricts nuclear entry of SIVMAC/SIVSM in human blood cells
15. Evidence for biphasic uncoating during HIV-1 infection from a novel imaging assay
16. TNPO3 protects HIV-1 replication from CPSF6-mediated capsid stabilization in the host cell cytoplasm
17. HIV-1 capsid is involved in post-nuclear entry steps.
18. Vpx rescues HIV-1 transduction of dendritic cells from the antiviral state established by type 1 interferon
19. TRIM5alpha contributes to the anti-viral state
20. TRIM5α selectively binds a restriction-sensitive retroviral capsid
21. Evidence for biphasic uncoating during HIV-1 infection from a novel imaging assay.
22. HIV-1 uncoating in human CD4+ T cells: kinetic and functional analyses.
23. Lv4, an activity that restricts nuclear entry of SIVMAC/SIVSM in human blood cells.
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