Determination of the intramolecular disulfide bond arrangement and biochemical identification of the glycosylation sites of the nonstructural protein NS1 of Murray Valley encephalitis virus


Autoria(s): Blitvich, B. J.; Scanlon, D.; Shiell, B. J.; Mackenzie, J. S.; Pham, K.; Hall, R. A.
Data(s)

01/01/2001

Resumo

The 12 cysteine residues in the flavivirus NS1 protein are strictly conserved, suggesting that they form disulfide bonds that are critical for folding the protein into a functional structure. In this study, we examined the intramolecular disulfide bond arrangement of NS1 of Murray Valley encephalitis virus and elucidated three of the six cysteine-pairing arrangements. Disulfide linkages were identified by separating tryptic-digested NS1 by reverse-phase high pressure liquid chromatography and analysing the resulting peptide peaks by protein sequencing, amino acid analysis and/or electrospray mass spectrometry. The pairing arrangements between the six amino-terminal cysteines were identified as follows: Cys(4)-Cys(15), Cys(55)-Cys(143) and Cys(179)-Cys(223). Although the pairing arrangements between the six carboxyterminal cysteines were not determined, we were able to eliminate several cysteine-pairing combinations. Furthermore, we demonstrated that all three putative N-linked glycosylation sites of NS1 are utilized and that the Asn(207) glycosylation site contains a mannose-rich glycan.

Identificador

http://espace.library.uq.edu.au/view/UQ:58782

Idioma(s)

eng

Publicador

Society for General Microbiology

Palavras-Chave #Biotechnology & Applied Microbiology #Virology #Tick-borne Encephalitis #Yellow-fever #Nucleotide-sequence #Dengue Virus #Replication #Mutagenesis #Expression #Genome #Rna #Transcomplementation #C1 #270303 Virology #780105 Biological sciences
Tipo

Journal Article