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Journal of Molecular Biology|December 5, 1998
Regulation of phosphatase activity in bacterial chemotaxisY Blat, B Gillespie, A Bren, et al.Proceedings of the National Academy of Sciences of the United States of America|December 1, 1977
Deuterium magnetic resonance studies of the interaction of lipids with membrane proteinsF W Dahlquist, D C Muchmore, J H Davis, et al.The Journal of Biological Chemistry|April 25, 1983
Multiple covalent modifications of Trg, a sensory transducer of Escherichia coliM R Kehry, P Engström, F W Dahlquist, et al.Journal of Magnetic Resonance. Series B|August 1, 1995
15N, 13C, and 1H NMR assignments and secondary structure for T4-lysozymeM W Fischer, A Majumdar, F W Dahlquist, et al.Experimental Cell Research|November 1, 1983
31P-NMR analysis of sea urchin sperm activation. Reversible formation of high energy phosphate compounds by changes in intracellular pHR Christen, R W Schackmann, F W Dahlquist, et al.Nature|February 11, 1993
How amino-acid insertions are allowed in an alpha-helix of T4 lysozymeD W Heinz, W A Baase, F W Dahlquist, et al.Proceedings of the National Academy of Sciences of the United States of America|June 1, 1983
Enzymatic deamidation of methyl-accepting chemotaxis proteins in Escherichia coli catalyzed by the cheB gene productM R Kehry, M W Bond, M W Hunkapiller, et al.Biochemistry|May 14, 1991
2H nuclear magnetic resonance of the gramicidin A backbone in a phospholipid bilayerR S Prosser, J H Davis, F W Dahlquist, et al.Biochemistry|February 12, 1985
Nuclear magnetic resonance observation and dynamics of specific amide protons in T4 lysozymeR H Griffey, A G Redfield, R E Loomis, et al.Genes & Development|May 1, 1991
Secondary structure of the homeo domain of yeast alpha 2 repressor determined by NMR spectroscopyC L Phillips, A K Vershon, A D Johnson, et al.Pageof 11