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http://purl.uniprot.org/citations/21295816http://www.w3.org/1999/02/22-rdf-syntax-ns#typehttp://purl.uniprot.org/core/Journal_Citation
http://purl.uniprot.org/citations/21295816http://www.w3.org/1999/02/22-rdf-syntax-ns#typehttp://purl.uniprot.org/core/Journal_Citation
http://purl.uniprot.org/citations/21295816http://www.w3.org/2000/01/rdf-schema#comment"The vaccinia virus entry-fusion complex (EFC) consists of 10 to 12 proteins that are embedded in the viral membrane and individually required for fusion with the cell and entry of the core into the cytoplasm. The architecture of the EFC is unknown except for information regarding two pair-wise interactions: A28 with H2 and A16 with G9. Here we used a technique to destabilize the EFC by repressing the expression of individual components and identified a third pair-wise interaction: G3 with L5. These two proteins remained associated under several different EFC destabilization conditions and in each case were immunopurified together as demonstrated by Western blotting. Further evidence for the specific interaction of G3 and L5 was obtained by mass spectrometry. This interaction also occurred when G3 and L5 were expressed in uninfected cells, indicating that no other viral proteins were required. Thus, the present study extends our knowledge of the protein interactions important for EFC assembly and stability."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.org/dc/terms/identifier"doi:10.1016/j.virol.2011.01.014"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.org/dc/terms/identifier"doi:10.1016/j.virol.2011.01.014"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/author"Moss B."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/author"Moss B."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/author"Wolfe C.L."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/author"Wolfe C.L."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/date"2011"xsd:gYear
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/date"2011"xsd:gYear
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/name"Virology"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/name"Virology"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/pages"278-283"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/pages"278-283"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/title"Interaction between the G3 and L5 proteins of the vaccinia virus entry-fusion complex."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/title"Interaction between the G3 and L5 proteins of the vaccinia virus entry-fusion complex."xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/volume"412"xsd:string
http://purl.uniprot.org/citations/21295816http://purl.uniprot.org/core/volume"412"xsd:string
http://purl.uniprot.org/citations/21295816http://www.w3.org/2004/02/skos/core#exactMatchhttp://purl.uniprot.org/pubmed/21295816
http://purl.uniprot.org/citations/21295816http://www.w3.org/2004/02/skos/core#exactMatchhttp://purl.uniprot.org/pubmed/21295816
http://purl.uniprot.org/citations/21295816http://xmlns.com/foaf/0.1/primaryTopicOfhttps://pubmed.ncbi.nlm.nih.gov/21295816
http://purl.uniprot.org/citations/21295816http://xmlns.com/foaf/0.1/primaryTopicOfhttps://pubmed.ncbi.nlm.nih.gov/21295816
http://purl.uniprot.org/uniprot/P68623http://purl.uniprot.org/core/citationhttp://purl.uniprot.org/citations/21295816
http://purl.uniprot.org/uniprot/P68458http://purl.uniprot.org/core/citationhttp://purl.uniprot.org/citations/21295816