Full-Length, Glycosylated NSP4 Is Localized to Plasma Membrane Caveolae by a Novel Raft Isolation Technique
- 1 June 2007
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 81 (11), 5472-5483
- https://doi.org/10.1128/jvi.01862-06
Abstract
Rotavirus NSP4, initially characterized as an endoplasmic reticulum intracellular receptor, is a multifunctional viral enterotoxin that induces diarrhea in murine pups. There have been recent reports of the secretion of a cleaved NSP4 fragment (residues 112 to 175) and of the association of NSP4 with LC3-positive autophagosomes, raft membranes, and microtubules. To determine if NSP4 traffics to a specific subset of rafts at the plasma membrane, we isolated caveolae from plasma membrane-enriched material that yielded caveola membranes free of endoplasmic reticulum and nonraft plasma membrane markers. Analyses of the newly isolated caveolae from rotavirus-infected MDCK cells revealed full-length, high-mannose glycosylated NSP4. The lack of Golgi network-specific processing of the caveolar NSP4 glycans supports studies showing that NSP4 bypasses the Golgi apparatus. Confocal imaging showed the colocalization of NSP4 with caveolin-1 early and late in infection, elucidating the temporal and spatial NSP4-caveolin-1 association during infection. These data were extended with fluorescent resonance energy transfer analyses that confirmed the NSP4 and caveolin-1 interaction in that the specific fluorescently tagged antibodies were within 10 nm of each other during infection. Cells transfected with NSP4 showed patterns of staining and colocalization with caveolin-1 similar to those of infected cells. This study presents an endoplasmic reticulum contaminant-free caveola isolation protocol; describes the presence of full-length, endoglycosidase H-sensitive NSP4 in plasma membrane caveolae; provides confirmation of the NSP4-caveolin interaction in the presence and absence of other viral proteins; and provides a final plasma membrane destination for Golgi network-bypassing NSP4 transport.Keywords
This publication has 72 references indexed in Scilit:
- Rotavirus NSP4 Induces a Novel Vesicular Compartment Regulated by Calcium and Associated with ViroplasmsJournal of Virology, 2006
- Dissecting Rotavirus Particle-Raft Interaction with Small Interfering RNAs: Insights into Rotavirus Transit through the Secretory PathwayJournal of Virology, 2006
- The Rotavirus Enterotoxin NSP4 Directly Interacts with the Caveolar Structural Protein Caveolin-1Journal of Virology, 2006
- Using fluorescence resonance energy transfer to measure distances along individual DNA molecules: Corrections due to nonideal transferThe Journal of Chemical Physics, 2005
- A novel class of clathrin-coated vesicles budding from endosomes.The Journal of cell biology, 1996
- A detergent-free method for purifying caveolae membrane from tissue culture cells.Proceedings of the National Academy of Sciences, 1995
- Caveolin, a protein component of caveolae membrane coatsCell, 1992
- Topology of Na+,K+‐ATPase Identification of the extra‐ and intracellular hydrophilic loops of the catalytic subunit by specific antibodiesFEBS Letters, 1988
- Isolation and characterization of low and high affinity goat antibodies directed to single antigenic sites on human hemoglobinImmunochemistry, 1976
- Chemical Coupling of Peptides and Proteins to Polysaccharides by Means of Cyanogen HalidesNature, 1967