In vivo growth of porcine reproductive and respiratory syndrome virus engineered nsp2 deletion mutants
Author:
Publisher
Elsevier BV
Subject
Cancer Research,Infectious Diseases,Virology
Reference46 articles.
1. Antibody repertoire development in fetal and neonatal piglets: XIX. Undiversified B cells with hydrophobic HCDR3s preferentially proliferate in the porcine reproductive and respiratory syndrome;Butler;J. Immunol.,2007
2. Immunodominant epitopes in nsp2 of porcine reproductive and respiratory syndrome virus are dispensable for replication, but play an important role in modulation of the host immune response;Chen;J. Gen. Virol.,2010
3. Serologic marker candidates identified among B-cell linear epitopes of Nsp2 and structural proteins of a North American strain of porcine reproductive and respiratory syndrome virus;de Lima;Virology,2006
4. Processing and evolution of the N-terminal region of the arterivirus replicase ORF1a protein: identification of two papainlike cysteine proteases;den Boon;J. Virol.,1995
5. Neutralizing antibody responses of pigs infected with natural GP5 N-glycan mutants of porcine reproductive and respiratory syndrome virus;Faaberg;Viral Immunol.,2006
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