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Palmitoylation of the murine leukemia virus envelope glycoprotein transmembrane subunits
1Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.
Abstract:
The envelope protein of Friend murine leukemia virus is modified by fatty acylation of the transmembrane (TM) protein subunit. The labeling by [3H]palmitic acid was found to be sensitive to treatment with the reducing reagents 2-mercaptoethanol and hydroxylamine, indicating the presence of a thioester linkage. Pulse-chase experiments showed that the precursor protein can be labeled by [3H]palmitic acid prior to its cleavage into the surface and TM subunits. By using site-directed mutagenesis, we determined that palmitoylation occurs on a cysteine residue, Cys 606, located in the transmembrane domain. A thin-layer chromatography assay after acid hydrolysis showed that incorporated label comigrated with palmitic acid. When another cysteine residue was introduced into the cytoplasmic tail 22 amino acids from the transmembrane domain, no palmitoylation was observed to occur on this cysteine residue, demonstrating the importance of the position of the cysteine residue for palmitoylation. Sequence comparison revealed that most retrovirus envelope proteins have one or two conserved cysteine residues in their transmembrane domain. Mutations that change the palmitoylation state of the murine leukemia virus envelope protein did not affect its transport, processing, surface expression, or cell fusion activity. The palmitate-deficient viral envelope proteins were incorporated into virus particles, and replication of the virus in vitro was not affected significantly by the mutation of the palmitoylation site.
Insights
Friend murine leukemia virus envelope proteins undergo fatty acylation via palmitoylation on a specific transmembrane cysteine residue. This modification does not impact viral replication or protein function.
Area of Science:
- Virology
- Molecular Biology
- Protein Biochemistry
Background:
- The envelope protein of Friend murine leukemia virus (MuLV) is a critical component for viral entry.
- Fatty acylation, specifically palmitoylation, is a post-translational modification that can influence protein function and localization.
Purpose of the Study:
- To investigate the mechanism and functional significance of fatty acylation on the Friend MuLV envelope protein.
- To identify the specific site and nature of the fatty acylation modification.
Main Methods:
- Labeling with [3H]palmitic acid and treatment with reducing agents to identify thioester linkages.
- Pulse-chase experiments to track protein modification during processing.
- Site-directed mutagenesis to pinpoint the palmitoylation site.
- Thin-layer chromatography to confirm the incorporated fatty acid.
Main Results:
- Palmitoylation of the MuLV envelope protein occurs via a thioester linkage on cysteine 606 within the transmembrane domain.
- This modification happens before the precursor protein is cleaved into surface and transmembrane subunits.
- Mutating the palmitoylation site did not affect protein transport, processing, surface expression, cell fusion, or viral replication in vitro.
Conclusions:
- Palmitoylation of the Friend MuLV envelope protein occurs at a specific cysteine residue in the transmembrane domain.
- This modification is not essential for the protein's function, viral particle incorporation, or replication.