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Journal of Anatomy|February 1, 1995
The timing of ossification of the limb bones, and growth rates of various long bones of the fore and hind limbs of the prenatal and early postnatal laboratory mouseJ T Patton, M H KaufmanVirology|February 1, 1991
Rotavirus morphogenesis: domains in the major inner capsid protein essential for binding to single-shelled particles and for trimerizationL L Clapp, J T PattonJournal of Virology|November 1, 1987
Synthesis of plus- and minus-strand RNA in rotavirus-infected cellsS Stacy-Phipps, J T PattonVirology|October 1, 1988
Structure and protein composition of the rotavirus replicase particleJ T Patton, C O GallegosVirology|October 1, 1989
Characterization of rotavirus replication intermediates: a model for the assembly of single-shelled particlesC O Gallegos, J T PattonJournal of Virology|November 13, 1999
Multimers formed by the rotavirus nonstructural protein NSP2 bind to RNA and have nucleoside triphosphatase activityZ Taraporewala, D Chen, J T PattonJournal of Virology|June 1, 1994
Deletion mapping of the rotavirus metalloprotein NS53 (NSP1): the conserved cysteine-rich region is essential for virus-specific RNA bindingJ Hua, X Chen, J T PattonVirology|February 13, 2001
Multimers of the bluetongue virus nonstructural protein, NS2, possess nucleotidyl phosphatase activity: similarities between NS2 and rotavirus NSP2Z F Taraporewala, D Chen, J T PattonVirology|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 PattonPageof 107