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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Effects of blocking individual maturation cleavages in murine leukemia virus gag
Masamichi Oshima1, Delphine Muriaux, Jane Mirro
1HIV Drug Resistance Program. Image Analysis Laboratory, SAIC Frederick, National Cancer Institute-Frederick, Frederick, Maryland 21702-1201, USA.
Abstract:
A single protein, termed Gag, is responsible for retrovirus particle assembly. After the assembled virion is released from the cell, Gag is cleaved at several sites by the viral protease (PR). The cleavages catalyzed by PR bring about a wide variety of physical changes in the particle, collectively termed maturation, and convert the particle into an infectious virion. In murine leukemia virus (MLV) maturation, Gag is cleaved at three sites, resulting in formation of the matrix (MA), p12, capsid (CA), and nucleocapsid (NC) proteins. We introduced mutations into MLV that inhibited cleavage at individual sites in Gag. All mutants had lost the intensely staining ring characteristic of immature particles; thus, no single cleavage event is required for this feature of maturation. Mutant virions in which MA was not cleaved from p12 were still infectious, with a specific infectivity only approximately 10-fold below that of the wild type. Particles in which p12 and CA could not be separated from each other were noninfectious and lacked a well-delineated core despite the presence of dense material in their interiors. In both of these mutants, the dimeric viral RNA had undergone the stabilization normally associated with maturation, suggesting that this change may depend upon the separation of CA from NC. Alteration of the C-terminal end of CA blocked CA-NC cleavage but also reduced the efficiency of particle formation and, in some cases, severely disrupted the ability of Gag to assemble into regular structures. This observation highlights the critical role of this region of Gag in assembly.
Insights
Murine leukemia virus (MLV) Gag protein cleavage is essential for retrovirus maturation. Specific Gag cleavage sites are critical for particle assembly and infectivity, with some mutations affecting core structure and RNA stabilization.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Retrovirus particle assembly relies on the Gag polyprotein.
- Viral protease (PR) cleaves Gag post-assembly, initiating maturation and infectivity.
- Murine leukemia virus (MLV) Gag processing involves cleavage into matrix (MA), p12, capsid (CA), and nucleocapsid (NC) proteins.
Purpose of the Study:
- To investigate the role of individual Gag cleavage sites in MLV maturation.
- To determine how specific Gag processing events impact virion structure and infectivity.
Main Methods:
- Site-directed mutagenesis of MLV Gag to inhibit specific cleavage events.
- Analysis of virion morphology and infectivity of mutant viruses.
- Assessment of viral RNA stabilization in mutant particles.
Main Results:
- No single Gag cleavage event was required for the characteristic immature particle ring structure.
- Inhibition of MA-p12 cleavage resulted in a moderate 10-fold decrease in infectivity.
- Failure to separate p12 and CA rendered particles noninfectious, with disrupted core formation.
- RNA stabilization occurred even without complete Gag processing, suggesting CA-NC separation is key.
- Alterations at the CA C-terminus impaired assembly and Gag structural organization.
Conclusions:
- Specific Gag cleavage events, particularly CA-NC separation, are crucial for MLV virion maturation and infectivity.
- The C-terminal region of CA plays a vital role in Gag assembly.
- Maturation involves complex interplay between Gag processing, particle structure, and RNA packaging.
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