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The Journal of Biological Chemistry|November 25, 1993
Probing the reactivity of the GTP- and GDP-bound conformations of elongation factor Tu in complex with the antibiotic GE2270 AP H Anborgh, A ParmeggianiThe EMBO Journal|April 1, 1991
New antibiotic that acts specifically on the GTP-bound form of elongation factor TuP H Anborgh, A ParmeggianiEuropean Journal of Biochemistry|September 1, 1992
Site-directed mutagenesis of elongation factor Tu. The functional and structural role of residue Cys81P H Anborgh, A Parmeggiani, J JonákFEBS Letters|March 7, 1998
Interaction of EF-Tu with EF-Ts: substitution of His-118 in EF-Tu destabilizes the EF-Tu x EF-Ts complex but does not prevent EF-Ts from stimulating the release of EF-Tu-bound GDPJ Jonák, P H Anborgh, A ParmeggianiFEBS Letters|April 18, 1994
Histidine-118 of elongation factor Tu: its role in aminoacyl-tRNA binding and regulation of the GTPase activityJ Jonák, P H Anborgh, A ParmeggianiFEBS Letters|November 4, 1991
Kirromycin-induced modifications facilitate the separation of EF-Tu species and reveal intermolecular interactionsP H Anborgh, G W Swart, A ParmeggianiThe Journal of Biological Chemistry|June 16, 2000
beta 2-adrenergic receptor internalization, endosomal sorting, and plasma membrane recycling are regulated by rab GTPasesJ L Seachrist, P H Anborgh, S S FergusonBiochemistry|February 21, 1998
Functional role of the noncatalytic domains of elongation factor Tu in the interactions with ligandsR Cetin, P H Anborgh, R H Cool, et al.Biochemistry|August 18, 1992
Substitution of aspartic acid-80, a residue involved in coordination of magnesium, weakens the GTP binding and strongly enhances the GTPase of the G domain of elongation factor TuK Harmark, P H Anborgh, M Merola, et al.Biochimica Et Biophysica Acta|August 27, 1990
Mutagenesis of the NH2-terminal domain of elongation factor TuF Gümüşel, R H Cool, A Weijland, et al.Pageof 3