Synthesis of guanylylated peptides derived from norovirus VPg as molecular tools for studying norovirus replication C4PR_LIV
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ABSTRACT: Norovirus, a member of the Caliciviridae family, is a positive-sense single-stranded RNA (+ssRNA) virus and a leading cause of acute gastroenteritis worldwide, especially affecting young children and the elderly. Due to a lack of specific treatment, norovirus infection causes 200,000 deaths each year and imposes an economic burden exceeding $60 billion. To address this challenge and develop medicines and diagnostics, further research into norovirus reproduction is needed. Norovirus uses a nucleotidylated protein, known as VPg (viral protein genome-linked), to initiate genome replication, by acting as a replication primer. The genomic RNA of norovirus is linked by a phosphodiester bond between the 5’-terminal guanosine (norovirus) and the phenolic oxygen of a tyrosine residue (Y27 for norovirus). In this work we demonstrate the synthesis of peptides derived from guanylylated norovirus VPg and their use in proteomic studies of norovirus replication.
ORGANISM(S): Murine Norovirus Mus Musculus
SUBMITTER:
Leandro Neves
PROVIDER: PXD075074 | panorama | Tue Sep 08 00:00:00 GMT+01:00 2026
REPOSITORIES: PanoramaPublic
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