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Virology|September 1, 1993
Comparative analysis of the rotavirus NS53 gene: conservation of basic and cysteine-rich regions in the protein and possible stem-loop structures in the RNAJ Hua, E A Mansell, J T PattonVirology|August 1, 1994
The rotavirus RNA-binding protein NS35 (NSP2) forms 10S multimers and interacts with the viral RNA polymeraseM D Kattoura, X Chen, J T PattonBioorganic & Medicinal Chemistry Letters|April 11, 2001
Synthesis and biological evaluation of a sialyl Lewis X mimic with significantly improved E-selectin inhibitionG Thoma, J L Magnani, J T PattonJournal of Virology|August 1, 1993
Location of intrachain disulfide bonds in the VP5* and VP8* trypsin cleavage fragments of the rhesus rotavirus spike protein VP4J T Patton, J Hua, E A MansellThe Journal of Biological Chemistry|December 31, 2000
Rotavirus nonstructural protein NSP2 self-assembles into octamers that undergo ligand-induced conformational changesP Schuck, Z Taraporewala, P McPhie, et al.Journal of Virology|January 1, 1983
Cell-free synthesis and assembly of vesicular stomatitis virus nucleocapsidsJ T Patton, N L Davis, G W WertzJournal of Virology|June 1, 1979
Transcription of the bovine parvovirus genome in isolated nucleiJ T Patton, E R Stout, R C BatesJournal of Virology|November 1, 1996
The 3'-terminal consensus sequence of rotavirus mRNA is the minimal promoter of negative-strand RNA synthesisM J Wentz, J T Patton, R F RamigJournal of Virology|February 1, 1984
N protein alone satisfies the requirement for protein synthesis during RNA replication of vesicular stomatitis virusJ T Patton, N L Davis, G W WertzThe Journal of General Virology|March 1, 1983
Inhibition of vesicular stomatitis virus RNA synthesis by 2',3'-dideoxycytidine 5'-triphosphateJ T Patton, N L Davis, G W WertzPageof 295