Membrane Association of Greasy Grouper Nervous Necrosis Virus Protein A and Characterization of Its Mitochondrial Localization Targeting Signal
Open Access
- 15 June 2004
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 78 (12) , 6498-6508
- https://doi.org/10.1128/jvi.78.12.6498-6508.2004
Abstract
Localization of RNA replication to intracellular membranes is a universal feature of positive-strand RNA viruses. The betanodavirus greasy grouper ( Epinephelus tauvina ) nervous necrosis virus (GGNNV) is a positive-RNA virus with one of the smallest genomes among RNA viruses replicating in fish cells. To understand the localization of GGNNV replication complexes, we generated polyclonal antisera against protein A, the GGNNV RNA-dependent RNA polymerase. Protein A was detected at 5 h postinfection in infected sea bass cells. Biochemical fractionation experiments revealed that GGNNV protein A sedimented with intracellular membranes upon treatment with an alkaline pH and a high salt concentration, indicating that GGNNV protein A is tightly associated with intracellular membranes in infected cells. Confocal immunofluorescence microscopy and bromo-UTP incorporation studies identified mitochondria as the intracellular site of protein A localization and viral RNA synthesis. In addition, protein A fused with green fluorescent protein (GFP) was detected in the mitochondria in transfected cells and was demonstrated to be tightly associated with intracellular membranes by biochemical fractionation analysis and membrane flotation assays, indicating that protein A alone was sufficient for mitochondrial localization in the absence of RNA replication, nonstructural protein B, or capsid proteins. Three sequence analysis programs showed two regions of hydrophobic amino acid residues, amino acids 153 to 173 and 229 to 249, to be transmembrane domains (TMD) that might contain a membrane association domain. Membrane fraction analysis showed that the major domain is N-terminal amino acids 215 to 255, containing the predicted TMD from amino acids 229 to 249. Using GFP as the reporter by systematically introducing deletions of these two regions in the constructs, we further confirmed that the N-terminal amino acids 215 to 255 of protein A function as a mitochondrial targeting signal.Keywords
This publication has 41 references indexed in Scilit:
- Flock House Virus RNA Replicates on Outer Mitochondrial Membranes in Drosophila CellsJournal of Virology, 2001
- Predicting transmembrane protein topology with a hidden markov model: application to complete genomes11Edited by F. CohenJournal of Molecular Biology, 2001
- Predicting Subcellular Localization of Proteins Based on their N-terminal Amino Acid SequenceJournal of Molecular Biology, 2000
- Principles governing amino acid composition of integral membrane proteins: application to topology prediction 1 1Edited by J. ThorntonJournal of Molecular Biology, 1998
- Principles of membrane protein assembly and structureProgress in Biophysics and Molecular Biology, 1996
- Common Principles of Protein Translocation Across MembranesScience, 1996
- Import and Insertion of Proteins into the Mitochondrial Outer MembraneEuropean Journal of Biochemistry, 1995
- Fluorescent labeling of nascent RNA reveals transcription by RNA polymerase II in domains scattered throughout the nucleusThe Journal of cell biology, 1993
- Membrane protein structure predictionJournal of Molecular Biology, 1992
- Implication of mitochondria in the replication of Nodamura virus in larvae of the Lepidoptera,Galleria mellonella (L.) and in suckling miceArchiv für die gesamte Virusforschung, 1990