Chemical probing of virginiamycin m-promoted conformational change of the peptidyl-transferase domain

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Abstract

Previous findings suggest the location of the central loop of domain V of 23S rRNA within the peptidyltransferase domain of ribosomes. This enzymatic activity is inhibited by some antibiotics, including type A (virginiamycin M or VM) and type B (virginiamycin S or VS) synergimycins, antibiotics endowed with a synergistic action in vivo. In the present work, the ability of VM and VS to modify the accessibility of 23S rRNA bases within ribosomes to chemical reagents has been explored. VM afforded a protection of rRNA bases A2037, A2042, G2049 and C2050. Moreover, when ribosomes were incubated with the two virginiamycin components, the base A2062, which was protected by VS alone, became accessible to dimethyl sulphate (DMS). Modified reactivity to chemical reagents of different rRNA bases located either in the central loop of domain V or in its proximity furnishes experimental evidence for conformational ribosome alterationsinduced by VM binding. © 1994 Oxford University Press.

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Vannuffel, P., Giambattista, M. D., & Cocito, C. (1994). Chemical probing of virginiamycin m-promoted conformational change of the peptidyl-transferase domain. Nucleic Acids Research, 22(21), 4449–4453. https://doi.org/10.1093/nar/22.21.4449

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