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Mammalian reoviruses contain a myristoylated structural protein
M L Nibert1, L A Schiff, B N Fields
1Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, Massachusetts.
Abstract:
The structural protein mu 1 of mammalian reoviruses was noted to have a potential N-myristoylation sequence at the amino terminus of its deduced amino acid sequence. Virions labeled with [3H]myristic acid were used to demonstrate that mu 1 is modified by an amide-linked myristoyl group. A myristoylated peptide having a relative molecular weight (Mr) of approximately 4,000 was also shown to be a structural component of virions and was concluded to represent the 4.2-kDa amino-terminal fragment of mu 1 which is generated by the same proteolytic cleavage that yields the carboxy-terminal fragment and major outer capsid protein mu 1C. The myristoylated 4,000-Mr peptide was found to be present in reovirus intermediate subviral particles but to be absent from cores, indicating that it is a component of the outer capsid. A distinct large myristoylated fragment of the intact mu 1 protein was also identified in intermediate subviral particles, but no myristoylated mu-region proteins were identified in cores, consistent with the location of mu 1 in the outer capsid. Similarities between amino-terminal regions of the reovirus mu 1 protein and the poliovirus capsid polyprotein were noted. By analogy with other viruses that contain N-myristoylated structural proteins (particularly picornaviruses), we suggest that the myristoyl group attached to mu 1 and its amino-terminal fragments has an essential role in the assembly and structure of the reovirus outer capsid and in the process of reovirus entry into cells.
Insights
Reovirus outer capsid protein mu 1 is modified with myristic acid, a lipid group essential for viral assembly and cell entry. This modification is crucial for the structural integrity of the reovirus outer capsid.
Area of Science:
- Virology
- Structural Biology
- Molecular Biology
Background:
- The reovirus outer capsid protein mu 1 possesses a potential N-myristoylation sequence.
- N-myristoylation is a lipid modification crucial for protein function in various biological systems.
Purpose of the Study:
- To investigate the N-myristoylation of the reovirus mu 1 protein.
- To determine the role of myristoylation in reovirus structure and infection.
Main Methods:
- Labeling reovirus virions with [3H]myristic acid.
- Analysis of myristoylated viral components using molecular weight determination and subviral particle fractionation.
Main Results:
- Demonstrated that reovirus mu 1 protein is modified with an amide-linked myristoyl group.
- Identified a 4.2-kDa myristoylated amino-terminal fragment of mu 1 as a structural component of the outer capsid.
- Showed myristoylated mu 1 fragments are present in intermediate subviral particles but absent in cores.
Conclusions:
- Myristoylation of reovirus mu 1 and its fragments is essential for outer capsid assembly and structure.
- The myristoyl group likely plays a critical role in reovirus entry into host cells.
- Structural similarities to picornaviruses suggest conserved roles for N-myristoylated proteins in viral lifecycle.