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Bioorganicheskaia Khimiia|October 1, 1993
[Computerized structural analysis of O-specific polysaccharides O1A, O1B, and O1C from Escherichia coli]N E Nifant'ev, A S Shashkov, G M Lipkind, et al.The Journal of Physiology|December 8, 2004
Accessibility of mid-segment domain IV S6 residues of the voltage-gated Na+ channel to methanethiosulfonate reagentsAkihiko Sunami, Arlene Tracey, Ian W Glaaser, et al.Circulation Research|August 8, 2009
Using lidocaine and benzocaine to link sodium channel molecular conformations to state-dependent antiarrhythmic drug affinityDorothy A Hanck, Elena Nikitina, Megan M McNulty, et al.Comparative Immunology, Microbiology and Infectious Diseases|June 16, 2000
Antigenic characterization of the nucleocapsid protein of Newcastle disease virus by means of a new panel of monoclonal antibodiesA Panshin, E Shihmanter, Y Weisman, et al.Endocrinology|November 6, 2004
Significance of prohormone convertase 2, PC2, mediated initial cleavage at the proglucagon interdomain site, Lys70-Arg71, to generate glucagonArunangsu Dey, Gregory M Lipkind, Yves Rouillé, et al.Carbohydrate Research|December 21, 1989
Nuclear Overhauser effects and conformations of branched trisaccharide methyl beta-glycosides that contain a 3,4-disubstituted galactose residueG M Lipkind, A S Shashkov, O A Nechaev, et al.The Journal of Physiology|March 17, 2007
Charge at the lidocaine binding site residue Phe-1759 affects permeation in human cardiac voltage-gated sodium channelsMegan M McNulty, Gabrielle B Edgerton, Ravi D Shah, et al.Carbohydrate Research|December 21, 1989
Nuclear Overhauser effects and conformations of branched trisaccharide methyl beta-glycosides that contain a 2,3-disubstituted galactose residueG M Lipkind, A S Shashkov, O A Nechaev, et al.Carbohydrate Research|August 15, 1990
The structure of the biological repeating unit of the O-antigen of Hafnia alvei O39E Katzenellenbogen, E Romanowska, N A Kocharova, et al.Avian Diseases|April 1, 1996
Survey of the hemagglutinin (HA) cleavage site sequence of H5 and H7 avian influenza viruses: amino acid sequence at the HA cleavage site as a marker of pathogenicity potentialD A Senne, B Panigrahy, Y Kawaoka, et al.Pageof 9