4.6 Article

Crystal Structure of a Retroviral Polyprotein: Prototype Foamy Virus Protease-Reverse Transcriptase (PR-RT)

Journal

VIRUSES-BASEL
Volume 13, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/v13081495

Keywords

PFV; Pol polyprotein; PR-RT; protease; reverse transcriptase; maturation

Categories

Funding

  1. NIH MERIT Award [R37 AI027690]
  2. HIVE Center Grant [U54 AI150472]
  3. Intramural Research Programs of the NIH, through the National Cancer Institute

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The crystal structure of mature PR-RT from prototype FV shows that it can carry out protein processing and reverse transcription, but is not competent for enzyme activity. PFV PR-RT is monomeric and shares structural similarities with HIV-1 PR subunits, although it is in a configuration not suitable for enzymatic activity.
In most cases, proteolytic processing of the retroviral Pol portion of the Gag-Pol polyprotein precursor produces protease (PR), reverse transcriptase (RT), and integrase (IN). However, foamy viruses (FVs) express Pol separately from Gag and, when Pol is processed, only the IN domain is released. Here, we report a 2.9 angstrom resolution crystal structure of the mature PR-RT from prototype FV (PFV) that can carry out both proteolytic processing and reverse transcription but is in a configuration not competent for proteolytic or polymerase activity. PFV PR-RT is monomeric and the architecture of PFV PR is similar to one of the subunits of HIV-1 PR, which is a dimer. There is a C-terminal extension of PFV PR (101-145) that consists of two helices which are adjacent to the base of the RT palm subdomain, and anchors PR to RT. The polymerase domain of PFV RT consists of fingers, palm, thumb, and connection subdomains whose spatial arrangements are similar to the p51 subunit of HIV-1 RT. The RNase H and polymerase domains of PFV RT are connected by flexible linkers. Significant spatial and conformational (sub)domain rearrangements are therefore required for nucleic acid binding. The structure of PFV PR-RT provides insights into the conformational maturation of retroviral Pol polyproteins.

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