M-X-I Motif of Semliki Forest Virus Capsid Protein Affects Nucleocapsid Assembly
Open Access
- 15 May 2001
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 75 (10) , 4625-4632
- https://doi.org/10.1128/jvi.75.10.4625-4632.2001
Abstract
Alphavirus budding is driven by interactions between spike and nucleocapsid proteins at the plasma membrane. The binding motif, Y-X-L, on the spike protein E2 and the corresponding hydrophobic cavity on the capsid protein were described earlier. The spike-binding cavity has also been suggested to bind an internal hydrophobic motif, M113-X-I115, of the capsid protein. In this study we found that replacement of amino acids M113 and I115 with alanines, as single or double mutations, abolished formation of intracellular nucleocapsids. The mutants could still bud efficiently, but the NCs in the released virions were not stable after removal of the membrane and spike protein layer. In addition to wild-type spherical particles, elongated multicored particles were found at the plasma membrane and released from the host cell. We conclude that the internal capsid motif has a biological function in the viral life cycle, especially in assembly of nucleocapsids. We also provide further evidence that alphaviruses may assemble and bud from the plasma membrane in the absence of preformed nucleocapsids.Keywords
This publication has 32 references indexed in Scilit:
- Role of the C-terminal tryptophan residue for the structure-function of the alphavirus capsid proteinJournal of Molecular Biology, 1998
- Alphavirus Budding Is Dependent on the Interaction between the Nucleocapsid and Hydrophobic Amino Acids on the Cytoplasmic Domain of the E2 Envelope GlycoproteinVirology, 1997
- Aromatic interactions define the binding of the alphavirus spike to its nucleocapsidStructure, 1996
- Membrane fusion process of Semliki Forest virus. II: Cleavage-dependent reorganization of the spike protein complex controls virus entry.The Journal of cell biology, 1992
- Site-directed mutations in sindbis virus E2 glycoprotein's cytoplasmic domain and the 6K protein lead to similar defects in virus assembly and buddingVirology, 1991
- The signal sequence of the p62 protein of Semliki Forest virus is involved in initiation but not in completing chain translocation.The Journal of cell biology, 1990
- The T=4 envelope of sindbis virus is organized by interactions with a complementary T=3 capsidCell, 1987
- Evidence for a change in capsid morphology during Sindbis virus envelopmentVirus Research, 1984
- Nucleotide sequence of cDNA coding for Semliki Forest virus membrane glycoproteinsNature, 1980
- Assembly of Semliki Forest Virus Nucleocapsid: Detection of a Precursor in Infected CellsJournal of General Virology, 1978