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1. The need to implement FAIR principles in biomolecular simulations

11. Elasticity of the HIV-1 core facilitates nuclear entry and infection.

13. Order parameter prediction from molecular dynamics simulations in proteins

16. Elasticity of the HIV-1 Core Facilitates Nuclear Entry and Infection

20. The capsid lattice engages a bipartite NUP153 motif to mediate nuclear entry of HIV-1 cores

21. The Drug-Induced Interface That Drives HIV-1 Integrase Hypermultimerization and Loss of Function

22. Dynamic allostery governs cyclophilin A–HIV capsid interplay

23. Molecular determinants of Ebola nucleocapsid stability from molecular dynamics simulations.

29. Structural Basis of HIV-1 Maturation Inhibitor Binding and Activity

36. The capsid lattice engages a bipartite NUP153 motif to mediate nuclear entry of HIV-1 cores.

37. Structure of native HIV-1 cores and their interactions with IP6 and CypA

39. Mature HIV-1 capsid structure by cryo-electron microscopy and all-atom molecular dynamics

46. Permeability of the HIV-1 capsid to metabolites modulates viral DNA synthesis

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

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