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Molecular Reproduction and Development|May 29, 2000
Sperm-mediated preparation of transgenic Xenopus laevis and transmission of transgenic DNA to the next generationJ JonákJournal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences|January 2, 2007
Bacterial elongation factors EF-Tu, their mutants, chimeric forms, and domains: isolation and purificationJ JonákBiochimica Et Biophysica Acta|January 28, 1987
Reactivity of essential histidine residues in EF-Tu.GDP and EF-Tu.GTP from Escherichia coliJ Jonák, I RychlíkThe Biochemical Journal|October 1, 1973
Lack of inhibition by L-1-chloro-4-phenyl-3-toluene-p-sulphonamidobutan-2-one (L-1-tosylamido-2-phenylethyl chloromethyl ketone) of the formation of bacterial polypeptide chain initiation complexJ Jonák, B F ClarkBiochimica Et Biophysica Acta|April 27, 1974
The role of aminoacyl-tRNA binding site on the factor EF-T in uncoupled GTPase reactionJ Sedlácek, I Rychlík, J JonákFEBS 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 ParmeggianiBiochimica Et Biophysica Acta|August 30, 1982
Interaction of elongation factor EF-Tu with gamma-amides of GTP and beta-amides of GDP bearing the azidoaryl group or the chloroethylaminoaryl group placed at the terminal phosphateG T Babkina, J Jonák, I RychlíkEuropean 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 ParmeggianiPageof 3