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Published on: July 28, 2016
The Mason-Pfizer monkey virus internal scaffold domain enables in vitro assembly of human immunodeficiency virus type
Michael Sakalian1, Stephanie S Dittmer, A Dustin Gandy
1Department of Microbiology and Immunology, The University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73190, USA. mike-sakalian@ouhsc.edu
Abstract:
The Mason-Pfizer monkey virus (M-PMV) Gag protein possesses the ability to assemble into an immature capsid when synthesized in a reticulocyte lysate translation system. In contrast, the human immunodeficiency virus (HIV) Gag protein is incapable of assembly in parallel assays. To enable the assembly of HIV Gag, we have combined or inserted regions of M-PMV Gag into HIV Gag. By both biochemical and morphological criteria, several of these chimeric Gag molecules are capable of assembly into immature capsid-like structures in this in vitro system. Chimeric species containing large regions of M-PMV Gag fused to HIV Gag sequences failed to assemble, while species consisting of only the M-PMV p12 region, and its internal scaffold domain (ISD), fused to HIV Gag were capable of assembly, albeit at reduced kinetics compared to M-PMV Gag. The ability of the ISD to induce assembly of HIV Gag, which normally assembles at the plasma membrane, suggests a common requirement for a concentrating factor in retrovirus assembly. Despite the dramatic effect of the ISD on chimera assembly, the function of HIV Gag domains in that process was found to remain essential, since an assembly-defective mutant of HIV CA, M185A, abolished assembly when introduced into the chimera. This continued requirement for HIV Gag domain function in the assembly of chimeric molecules will allow this in vitro system to be used for the analysis of potential inhibitors of HIV immature particle assembly.
Insights
Researchers engineered human immunodeficiency virus (HIV) Gag protein assembly by incorporating regions from Mason-Pfizer monkey virus (M-PMV) Gag. This breakthrough enables in vitro studies of HIV immature particle assembly and potential inhibitors.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Mason-Pfizer monkey virus (M-PMV) Gag protein self-assembles into immature capsids in vitro.
- Human immunodeficiency virus (HIV) Gag protein does not assemble in similar in vitro systems.
Purpose of the Study:
- To engineer HIV Gag protein for in vitro assembly by incorporating M-PMV Gag regions.
- To identify key M-PMV Gag domains responsible for inducing assembly.
- To establish an in vitro system for studying HIV immature particle assembly and inhibitor screening.
Main Methods:
- Construction and synthesis of chimeric Gag proteins combining M-PMV and HIV Gag sequences.
- Biochemical and morphological analysis of chimeric Gag assembly in reticulocyte lysate.
- Introduction of an assembly-defective HIV CA mutant into chimeric constructs.
Main Results:
- Chimeric Gag molecules incorporating the M-PMV p12 region and internal scaffold domain (ISD) assembled into immature capsid-like structures.
- Assembly kinetics were reduced compared to M-PMV Gag alone.
- The ISD appears to act as a concentrating factor for Gag assembly.
- Essential function of HIV Gag domains was confirmed, as an assembly-defective mutant abolished chimera assembly.
Conclusions:
- The M-PMV ISD can induce assembly of HIV Gag in vitro, suggesting a conserved mechanism in retroviral assembly.
- HIV Gag domains remain essential for assembly, even in chimeric constructs.
- This in vitro system is suitable for analyzing inhibitors of HIV immature particle assembly.
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