The Macrolide Antibiotics
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-46304-4_30.pdf
Reference156 articles.
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3. Anliker, R., u. K. Gubler: Stoffwechselprodukte von Actinomyceten. (6. Mitteilung.) Über die Konstitution des Pikromycins. I. Helv. Chim. Acta 40, 119 (1957).
4. Apirion, D.: Three genes that affect Escherichia coli ribosomes. J. Mol. Biol. 30, 255 (1967).
5. Ballesta, J. P. G., V. Montejo, and D. Vazquez: Reconstitution of the 50S ribosome subunit. Localization of activities related to the peptidyl transferase centre. FEBS Letters 19, 75 (1971).
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1. Macrolide antibiotics allosterically predispose the ribosome for translation arrest;Proceedings of the National Academy of Sciences;2014-06-24
2. The Ribosomal Peptidyl Transferase Center: Structure, Function, Evolution, Inhibition;Critical Reviews in Biochemistry and Molecular Biology;2005-01
3. Peptide-mediated macrolide resistance reveals possible specific interactions in the nascent peptide exit tunnel;Molecular Microbiology;2004-08-31
4. Binding Site of Macrolide Antibiotics on the Ribosome: New Resistance Mutation Identifies a Specific Interaction of Ketolides with rRNA;Journal of Bacteriology;2001-12
5. A ketolide resistance mutation in domain II of 23S rRNA reveals the proximity of hairpin 35 to the peptidyl transferase centre;Molecular Microbiology;1999-01
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