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Cellular and Molecular Life Sciences : CMLS|November 20, 2003
Structure and morphogenesis of bacteriophage T4P G Leiman, S Kanamaru, V V Mesyanzhinov, et al.Proteins|June 1, 1993
Structure determination of feline panleukopenia virus empty particlesM Agbandje, R McKenna, M G Rossmann, et al.Proteins|January 1, 1989
Structural analysis of antiviral agents that interact with the capsid of human rhinovirusesJ Badger, I Minor, M A Oliveira, et al.Virology|December 1, 1990
Crystallization of cauliflower mosaic virusZ X Gong, H Wu, R H Cheng, et al.Journal of Molecular Biology|February 5, 1991
Human rhinovirus 14 complexed with antiviral compound R 61837M S Chapman, I Minor, M G Rossmann, et al.Virus Research|October 3, 1999
The structure of the two amino-terminal domains of human intercellular adhesion molecule-1 suggests how it functions as a rhinovirus receptorJ Bella, P R Kolatkar, C W Marlor, et al.Acta Crystallographica. Section B, Structural Science|February 1, 1992
Structure determination of monoclinic canine parvovirusJ Tsao, M S Chapman, H Wu, et al.Proceedings of the National Academy of Sciences of the United States of America|May 16, 1998
The structure of the two amino-terminal domains of human ICAM-1 suggests how it functions as a rhinovirus receptor and as an LFA-1 integrin ligandJ Bella, P R Kolatkar, C W Marlor, et al.Science (New York, N.Y.)|August 16, 1985
The structure of a T = 1 icosahedral empty particle from southern bean mosaic virusJ W Erickson, A M Silva, M R Murthy, et al.Journal of Molecular Biology|March 8, 1996
Atomic structure of the degraded procapsid particle of the bacteriophage G4: induced structural changes in the presence of calcium ions and functional implicationsR McKenna, B R Bowman, L L Ilag, et al.Pageof 74