Effects of Cations, Antibiotics and Other Agents on the Turnover of Guanosine-Nucleotide . Elongation-Factor-G . Ribosome Complexes
Author:
Publisher
Wiley
Subject
Biochemistry
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/j.1432-1033.1977.tb11973.x/fullpdf
Reference27 articles.
1. Detection of Guanosine-Nucleotide . Elongation-Factor-G Complexes Produced during the Decay of Guanosine-Nucleotide . Elongation-Factor-G . Ribosome Complexes
2. Function of sulfhydryl groups in ribosome-elongation factor G reactions. Assignment of guanine nucleotide binding site to elongation factor G.
3. Studies on translocation. 21. Steady state kinetic analysis of the mechanism of guanosine triphosphate hydrolysis catalyzed by Escherichia coli elongation factor G and the ribosome
4. Studies on translocation. 22. Equilibrium measurements of the interactions of guanine nucleotides with Escherichia coli elongation factor G and the ribosome
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1. Fusidic acid-dependent ribosomal complexes protect Escherichia coli ribosomes from the action of the type 1 ribosome-inactivating protein crotin 2;FEBS Letters;1993-03-01
2. Mechanism of action of gentamicin components. Characteristics of their binding to Escherichia coli ribosomes;European Journal of Biochemistry;1985-03
3. Effects of Apramycin, a Novel Aminoglycoside Antibiotic on Bacterial Protein Synthesis;European Journal of Biochemistry;1979-09
4. Dissociation of guanosine nucleotide.cntdot.elongation factor G.cntdot.ribosome complexes;Biochemistry;1979-04-17
5. Functional interaction of neomycin B and related antibiotics with 30S and 50S ribosomal subunits;Biochemical and Biophysical Research Communications;1979-04
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