Binding stoichiometry and structural model of the HIV-1 Rev/Importin beta complex
Spittler, D.; Indorato, R.-L.; Boeri Erba, E.; Delaforge, E.; Signor, L.; Harris, S. J.; Garcia Saez, I.; PALENCIA, A.; Gabel, F.; Blackledge, M.; Noirclerc-Savoye, M.; Petosa, C.
Show abstract
HIV-1 Rev mediates the nuclear export of intron-containing viral RNA transcripts and is essential for viral replication. Rev is imported into the nucleus by the host protein Importin {beta} (Imp{beta}), but how Rev associates with Imp{beta} is poorly understood. Here we report biochemical, biophysical and structural studies of the Imp{beta}/Rev complex. Gel shift, native mass spectrometry and isothermal titration calorimetry data reveal that Imp{beta} binds two Rev monomers through independent binding sites. Small-angle X-ray scattering (SAXS) data suggest that the HEAT repeats of Imp{beta} retain an extended conformation upon binding Rev, which according to NMR data is primarily recognized through its helical hairpin domain. Peptide scanning data and charge-reversal mutations identify the N-terminal tip of Rev helix 2 within Revs Arginine-Rich Motif (ARM) as a primary Imp{beta} binding epitope. Crosslinking mass spectrometry and compensatory mutagenesis data combined with molecular docking simulations suggest a structural model in which one Rev monomer binds to the C-terminal half of Imp{beta} with Rev helix 2 roughly parallel to the HEAT-repeat superhelical axis while the other monomer binds to the N-terminal half. These findings shed light on the molecular basis of Rev recognition by Imp{beta} and highlight an atypical binding behaviour that distinguishes Rev from canonical cellular Imp{beta} cargos.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Intrinsically disordered regions in the transcription factor MYC:MAX modulate DNA binding via intramolecular interactions 96%
- Defects in the assembly of ribosomes selected for β-amino acid incorporation 95%
- An integrative structural model of the full-length gp16 ATPase in bacteriophage phi29 DNA packaging motor 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.