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1.
Biomed Res Int ; 2013: 875958, 2013.
Article in English | MEDLINE | ID: mdl-24324976

ABSTRACT

The main vector of dengue in America is the mosquito Aedes aegypti, which is infected by dengue virus (DENV) through receptors of midgut epithelial cells. The envelope protein (E) of dengue virus binds to receptors present on the host cells through its domain III that has been primarily recognized to bind cell receptors. In order to identify potential receptors, proteins from mosquito midgut tissue and C6/36 cells were purified by affinity using columns with the recombinant E protein domain III (rE-DIII) or DENV particles bound covalently to Sepharose 4B to compare and evaluate their performance to bind proteins including putative receptors from female mosquitoes of Ae. aegypti. To determine their identity mass spectrometric analysis of purified proteins separated by polyacrylamide gel electrophoresis was performed. Our results indicate that both viral particles and rE-DIII bound proteins with the same apparent molecular weights of 57 and 67 kDa. In addition, viral particles bound high molecular weight proteins. Purified proteins identified were enolase, beta-adrenergic receptor kinase (beta-ARK), translation elongation factor EF-1 alpha/Tu, and cadherin.


Subject(s)
Aedes/genetics , Dengue Virus/metabolism , Dengue/genetics , Proteins/isolation & purification , Aedes/virology , Animals , Carrier Proteins , Dengue/transmission , Dengue/virology , Dengue Virus/genetics , Dengue Virus/pathogenicity , Epithelial Cells/metabolism , Humans , Proteins/chemistry , Proteins/metabolism , Proteomics
2.
BMC Microbiol ; 6: 85, 2006 Oct 02.
Article in English | MEDLINE | ID: mdl-17014723

ABSTRACT

BACKGROUND: Dengue viruses (DENV) attach to the host cell surface and subsequently enter the cell by receptor-mediated endocytosis. Several primary and low affinity co-receptors for this flavivirus have been identified. However, the presence of these binding molecules on the cell surface does not necessarily render the cell susceptible to infection. Determination of which of them serve as bona fide receptors for this virus in the vector may be relevant to treating DENV infection and in designing control strategies. RESULTS: (1) Overlay protein binding assay showed two proteins with molecular masses of 80 and 67 kDa (R80 and R67). (2) Specific antibodies against these two proteins inhibited cell binding and infection. (3) Both proteins were bound by all four serotypes of dengue virus. (4) R80 and R67 were purified by affinity chromatography from Ae. aegypti mosquito midguts and from Ae albopictus C6/36 cells. (5) In addition, a protein with molecular mass of 57 kDa was purified by affinity chromatography from the midgut extracts. (6) R80 and R67 from radiolabeled surface membrane proteins of C6/36 cells were immunoprecipitated by antibodies against Ae. aegypti midgut. CONCLUSION: Our results strongly suggest that R67 and R80 are receptors for the four serotypes of dengue virus in the midgut cells of Ae. aegypti and in C6/36 Ae. albopictus cells.


Subject(s)
Aedes/virology , Carrier Proteins/isolation & purification , Dengue Virus/physiology , Digestive System/metabolism , Receptors, Virus/metabolism , Animals , Carrier Proteins/immunology , Carrier Proteins/metabolism , Dengue Virus/classification , Insect Vectors/virology , Molecular Weight , Serotyping
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