4.7 Article

Molecular Determinants for Recognition of Divergent SAMHD1 Proteins by the Lentiviral Accessory Protein Vpx

Journal

CELL HOST & MICROBE
Volume 17, Issue 4, Pages 489-499

Publisher

CELL PRESS
DOI: 10.1016/j.chom.2015.03.004

Keywords

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Funding

  1. UK Medical Research Council [U117512710, U117592729, U117565647]
  2. Wellcome Trust [085955]
  3. EMBO long-term fellowship
  4. European Commission [GA-2010-267146]
  5. amfAR Mathilde Krim Fellowship in Basic Biomedical Research [108992-57-RKHF]
  6. Medical Research Council [MC_U117512710, 1111350, 1222450, MC_U117592729] Funding Source: researchfish
  7. The Francis Crick Institute [10162, 10042, 10178, 10305] Funding Source: researchfish
  8. The Francis Crick Institute
  9. Cancer Research UK [10015] Funding Source: researchfish
  10. Wellcome Trust [108012/Z/15/Z] Funding Source: researchfish
  11. MRC [MC_U117592729, MC_U117512710] Funding Source: UKRI
  12. Wellcome Trust [108012/Z/15/Z] Funding Source: Wellcome Trust

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The SAMHD1 triphosphohydrolase inhibits HIV-1 infection of myeloid and resting T cells by depleting dNTPs. To overcome SAMHD1, HIV-2 and some SIVs encode either of two lineages of the accessory protein Vpx that bind the SAMHD1 N or C terminus and redirect the host cullin-4 ubiquitin ligase to target SAMHD1 for proteasomal degradation. We present the ternary complex of Vpx from SIV that infects mandrills (SIVmnd-2) with the cullin-4 substrate receptor, DCAF1, and N-terminal and SAM domains from mandrill SAMHD1. The structure reveals details of Vpx lineage-specific targeting of SAMHD1 N-terminal degron sequences. Comparison with Vpx from SIV that infects sooty mangabeys (SIVsmm) complexed with SAMHD1-DCAF1 identifies molecular determinants directing Vpx lineages to N- or C-terminal SAMHD1 sequences. Inspection of the Vpx-DCAF1 interface also reveals conservation of Vpx with the evolutionally related HIV-1/SIV accessory protein Vpr. These data suggest a unified model for how Vpx and Vpr exploit DCAF1 to promote viral replication.

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