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Proceedings of the National Academy of Sciences of the United States of America|January 1, 1985
Ha-ras proteins exhibit GTPase activity: point mutations that activate Ha-ras gene products result in decreased GTPase activityV Manne, E Bekesi, H F KungExperimental Cell Research|February 1, 1986
Reversal of transformed phenotype by monoclonal antibodies against Ha-ras p21 proteinsH F Kung, M R Smith, E Bekesi, et al.International Journal of Peptide and Protein Research|February 1, 1995
Ras-dependent maturation of Xenopus oocytes is blocked by modified peptides of GTPase activating protein (GAP)J E Losardo, E Heimer, E Bekesi, et al.International Journal of Peptide and Protein Research|July 1, 1991
A synthetic peptide corresponding to a sequence in the GTPase activating protein inhibits p21ras stimulation and promotes guanine nucleotide exchangeB Rubinfeld, G Wong, E Bekesi, et al.Molecular & General Genetics : MGG|January 1, 1984
Autoregulation of the rho gene of Escherichia coli K-12H Kung, E Bekesi, S K Guterman, et al.The EMBO Journal|November 1, 1985
Transforming p21 ras protein: flexibility in the major variable region linking the catalytic and membrane-anchoring domainsB M Willumsen, A G Papageorge, N Hubbert, et al.Molecular Pharmacology|May 1, 1986
Structural and functional characterization of guanyl nucleotide-binding proteins using monoclonal antibodies to the alpha-subunit of transducinJ L Halpern, S C Tsai, R Adamik, et al.Molecular and Cellular Biology|July 1, 1986
Mutational analysis of a ras catalytic domainB M Willumsen, A G Papageorge, H F Kung, et al.The Journal of Biological Chemistry|September 2, 1994
Characterization of a 78-residue fragment of c-Raf-1 that comprises a minimal binding domain for the interaction with Ras-GTPJ E Scheffler, D S Waugh, E Bekesi, et al.Molecular and Cellular Biochemistry|August 15, 1989
Phosphorylation of human interleukin-2 (IL-2)H F Kung, I Calvert, E Bekesi, et al.Pageof 1