1. Molecular determinants for recognition of divergent SAMHD1 proteins by the lentiviral accessory protein Vpx.
- Author
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Schwefel D, Boucherit VC, Christodoulou E, Walker PA, Stoye JP, Bishop KN, and Taylor IA
- Subjects
- Animals, Carrier Proteins metabolism, Crystallography, X-Ray, Mandrillus, Models, Molecular, Monomeric GTP-Binding Proteins metabolism, Protein Conformation, Viral Regulatory and Accessory Proteins metabolism, Virus Replication, Carrier Proteins chemistry, Host-Pathogen Interactions, Monomeric GTP-Binding Proteins chemistry, Protein Multimerization, Viral Regulatory and Accessory Proteins chemistry
- Abstract
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., (Copyright © 2015 The Authors. Published by Elsevier Inc. All rights reserved.)
- Published
- 2015
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