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1. Viral and Cellular Requirements for the Nuclear Entry of Retroviral Preintegration Nucleoprotein Complexes

2. Efficient transduction of LEDGF/p75 mutant cells by complementary gain-of-function HIV-1 integrase mutant viruses

3. Engineered hyperactive integrase for concerted HIV-1 DNA integration.

4. Biochemical characterization of novel retroviral integrase proteins.

5. Nucleoporin NUP153 phenylalanine-glycine motifs engage a common binding pocket within the HIV-1 capsid protein to mediate lentiviral infectivity.

6. Structural basis for functional tetramerization of lentiviral integrase.

7. The SET complex acts as a barrier to autointegration of HIV-1.

8. A novel co-crystal structure affords the design of gain-of-function lentiviral integrase mutants in the presence of modified PSIP1/LEDGF/p75.

9. The lentiviral integrase binding protein LEDGF/p75 and HIV-1 replication.

10. rigrag: high-resolution mapping of genic targeting preferences during HIV-1 integration in vitro and in vivo

11. Long-Acting Cabotegravir for HIV/AIDS Prophylaxis

14. Factors that mold the nuclear landscape of HIV-1 integration

15. Structural and mechanistic bases for a potent HIV-1 capsid inhibitor

16. Distinct viral reservoirs in individuals with spontaneous control of HIV-1

17. The HIV-1 capsid-binding host factor CPSF6 is post-transcriptionally regulated by the cellular microRNA miR-125b

18. HIV-1 integrase binding to genomic RNA 5′-UTR induces local structural changes in vitro and in virio

19. The mouse mammary tumor virus intasome exhibits distinct dynamics on target DNA

21. Cytoplasmic CPSF6 regulates HIV-1 capsid trafficking and infection in a cyclophilin A-dependent manner

22. Cleavage and Polyadenylation Specificity Factor 6 Is Required for Efficient HIV-1 Latency Reversal

23. You can keep your coat on

24. Structure and function of retroviral integrase

25. Multifaceted HIV integrase functionalities and therapeutic strategies for their inhibition

26. Deep-learning in situ classification of HIV-1 virion morphology

27. Cryo-EM structure of the Rous sarcoma virus octameric cleaved synaptic complex intasome

28. A highly potent and safe pyrrolopyridine-based allosteric HIV-1 integrase inhibitor targeting host LEDGF/p75-integrase interaction site

29. D614G and SARS-CoV-2 replication fitness

30. HIV Capsid and Integration Targeting

31. Intra- and extra-cellular environments contribute to the fate of HIV-1 infection

32. CPSF6-Dependent Targeting of Speckle-Associated Domains Distinguishes Primate from Nonprimate Lentiviral Integration

33. Integrase-RNA interactions underscore the critical role of integrase in HIV-1 virion morphogenesis

35. A DNA-origami nuclear pore mimic reveals nuclear entry mechanisms of HIV-1 capsid

36. HIV-1 replication complexes accumulate in nuclear speckles and integrate into speckle-associated genomic domains

37. Close-up: HIV/SIV intasome structures shed new light on integrase inhibitor binding and viral escape mechanisms

38. Capsid lattice destabilization leads to premature loss of the viral genome and integrase enzyme during HIV-1 infection

39. A peptide derived from lens epithelium-derived growth factor stimulates HIV-1 DNA integration and facilitates intasome structural studies

40. Retroviral intasomes arising

41. Resistance to pyridine-based inhibitor KF116 reveals an unexpected role of integrase in HIV-1 Gag-Pol polyprotein proteolytic processing

42. Capsid-Dependent Host Factors in HIV-1 Infection

43. Haematopoietic stem and progenitor cells from human pluripotent stem cells

44. Structural basis for spumavirus GAG tethering to chromatin

45. Engineered Murine HSCs Reconstitute Multi-lineage Hematopoiesis and Adaptive Immunity

46. A New Class of Allosteric HIV-1 Integrase Inhibitors Identified by Crystallographic Fragment Screening of the Catalytic Core Domain

47. Capsid-CPSF6 interaction: Master regulator of nuclear HIV-1 positioning and integration

48. Dominant Negative MA-CA Fusion Protein Is Incorporated into HIV-1 Cores and Inhibits Nuclear Entry of Viral Preintegration Complexes

49. Structural basis of second-generation HIV integrase inhibitor action and viral resistance

50. Author response: HIV-1 integrase tetramers are the antiviral target of pyridine-based allosteric integrase inhibitors

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