Previous Article | Next Article 
J Virol. 1991 April; 65(4): 1960-1967
Mammalian reoviruses contain a myristoylated structural protein.
M L Nibert,
L A Schiff and
B N Fields
Department 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.
J Virol. 1991 April; 65(4): 1960-1967
This article has been cited by other articles:
-
Roy, P.
(2008). Bluetongue virus: dissection of the polymerase complex. J. Gen. Virol.
89: 1789-1804
[Abstract]
[Full Text]
-
Agosto, M. A., Myers, K. S., Ivanovic, T., Nibert, M. L.
(2008). A positive-feedback mechanism promotes reovirus particle conversion to the intermediate associated with membrane penetration. Proc. Natl. Acad. Sci. USA
105: 10571-10576
[Abstract]
[Full Text]
-
Ivanovic, T., Agosto, M. A., Chandran, K., Nibert, M. L.
(2007). A Role for Molecular Chaperone Hsc70 in Reovirus Outer Capsid Disassembly. J. Biol. Chem.
282: 12210-12219
[Abstract]
[Full Text]
-
Zhang, L., Chandran, K., Nibert, M. L., Harrison, S. C.
(2006). Reovirus {micro}1 Structural Rearrangements That Mediate Membrane Penetration. J. Virol.
80: 12367-12376
[Abstract]
[Full Text]
-
Agosto, M. A., Ivanovic, T., Nibert, M. L.
(2006). Mammalian reovirus, a nonfusogenic nonenveloped virus, forms size-selective pores in a model membrane. Proc. Natl. Acad. Sci. USA
103: 16496-16501
[Abstract]
[Full Text]
-
Coffey, C. M., Sheh, A., Kim, I. S., Chandran, K., Nibert, M. L., Parker, J. S. L.
(2006). Reovirus Outer Capsid Protein {micro}1 Induces Apoptosis and Associates with Lipid Droplets, Endoplasmic Reticulum, and Mitochondria.. J. Virol.
80: 8422-8438
[Abstract]
[Full Text]
-
Danthi, P., Hansberger, M. W., Campbell, J. A., Forrest, J. C., Dermody, T. S.
(2006). JAM-A-Independent, Antibody-Mediated Uptake of Reovirus into Cells Leads to Apoptosis. J. Virol.
80: 1261-1270
[Abstract]
[Full Text]
-
Suzuki, N., Supyani, S., Maruyama, K., Hillman, B. I.
(2004). Complete genome sequence of Mycoreovirus-1/Cp9B21, a member of a novel genus within the family Reoviridae, isolated from the chestnut blight fungus Cryphonectria parasitica. J. Gen. Virol.
85: 3437-3448
[Abstract]
[Full Text]
-
Odegard, A. L., Chandran, K., Zhang, X., Parker, J. S. L., Baker, T. S., Nibert, M. L.
(2004). Putative Autocleavage of Outer Capsid Protein {micro}1, Allowing Release of Myristoylated Peptide {micro}1N during Particle Uncoating, Is Critical for Cell Entry by Reovirus. J. Virol.
78: 8732-8745
[Abstract]
[Full Text]
-
Golden, J. W., Bahe, J. A., Lucas, W. T., Nibert, M. L., Schiff, L. A.
(2004). Cathepsin S Supports Acid-independent Infection by Some Reoviruses. J. Biol. Chem.
279: 8547-8557
[Abstract]
[Full Text]
-
Ebert, D. H., Kopecky-Bromberg, S. A., Dermody, T. S.
(2004). Cathepsin B Is Inhibited in Mutant Cells Selected during Persistent Reovirus Infection. J. Biol. Chem.
279: 3837-3851
[Abstract]
[Full Text]
-
Chandran, K., Parker, J. S. L., Ehrlich, M., Kirchhausen, T., Nibert, M. L.
(2003). The {delta} Region of Outer-Capsid Protein {micro}1 Undergoes Conformational Change and Release from Reovirus Particles during Cell Entry. J. Virol.
77: 13361-13375
[Abstract]
[Full Text]
-
Odegard, A. L., Chandran, K., Liemann, S., Harrison, S. C., Nibert, M. L.
(2003). Disulfide Bonding among {micro}1 Trimers in Mammalian Reovirus Outer Capsid: a Late and Reversible Step in Virion Morphogenesis. J. Virol.
77: 5389-5400
[Abstract]
[Full Text]
-
Chandran, K., Farsetta, D. L., Nibert, M. L.
(2002). Strategy for Nonenveloped Virus Entry: a Hydrophobic Conformer of the Reovirus Membrane Penetration Protein {micro}1 Mediates Membrane Disruption. J. Virol.
76: 9920-9933
[Abstract]
[Full Text]
-
Dawe, S., Duncan, R.
(2002). The S4 Genome Segment of Baboon Reovirus Is Bicistronic and Encodes a Novel Fusion-Associated Small Transmembrane Protein. J. Virol.
76: 2131-2140
[Abstract]
[Full Text]
-
Middleton, J. K., Severson, T. F., Chandran, K., Gillian, A. L., Yin, J., Nibert, M. L.
(2002). Thermostability of Reovirus Disassembly Intermediates (ISVPs) Correlates with Genetic, Biochemical, and Thermodynamic Properties of Major Surface Protein {micro}1. J. Virol.
76: 1051-1061
[Abstract]
[Full Text]
-
Baker, T. S., Olson, N. H., Fuller, S. D.
(1999). Adding the Third Dimension to Virus Life Cycles: Three-Dimensional Reconstruction of Icosahedral Viruses from Cryo-Electron Micrographs. Microbiol. Mol. Biol. Rev.
63: 862-922
[Abstract]
[Full Text]
-
Chandran, K., Walker, S. B., Chen, Y., Contreras, C. M., Schiff, L. A., Baker, T. S., Nibert, M. L.
(1999). In Vitro Recoating of Reovirus Cores with Baculovirus-Expressed Outer-Capsid Proteins µ1 and sigma 3. J. Virol.
73: 3941-3950
[Abstract]
[Full Text]
-
Jané-Valbuena, J., Nibert, M. L., Spencer, S. M., Walker, S. B., Baker, T. S., Chen, Y., Centonze, V. E., Schiff, L. A.
(1999). Reovirus Virion-Like Particles Obtained by Recoating Infectious Subvirion Particles with Baculovirus-Expressed sigma 3 Protein: an Approach for Analyzing sigma 3 Functions during Virus Entry. J. Virol.
73: 2963-2973
[Abstract]
[Full Text]
-
Denisova, E., Dowling, W., LaMonica, R., Shaw, R., Scarlata, S., Ruggeri, F., Mackow, E. R.
(1999). Rotavirus Capsid Protein VP5* Permeabilizes Membranes. J. Virol.
73: 3147-3153
[Abstract]
[Full Text]
-
Chandran, K., Nibert, M. L.
(1998). Protease Cleavage of Reovirus Capsid Protein µ1/µ1C Is Blocked by Alkyl Sulfate Detergents, Yielding a New Type of Infectious Subvirion Particle. J. Virol.
72: 467-475
[Abstract]
[Full Text]
Copyright © 1991 by the American Society for Microbiology. All rights reserved.