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Inhibition of bacterial translation and growth by peptide nucleic acids targeted to domain II of 23S rRNA

✍ Scribed by Huang Xue-Wen; Pan Jie; An Xian-Yuan; Zhuge Hong-Xiang


Book ID
105360659
Publisher
John Wiley and Sons
Year
2007
Tongue
English
Weight
224 KB
Volume
13
Category
Article
ISSN
1075-2617

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✦ Synopsis


Abstract

The objective of this work was to study the inhibitory effects of antisense peptide nucleic acids (PNAs) targeted to domain II of 23S rRNA on bacterial translation and growth. In this paper, we report that PNA(G1138) or peptide‐PNA(G1138) targeted to domain II of 23S rRNA can inhibit both translation in vitro (in a cell‐free translation system) and bacterial growth in vivo. The inhibitory concentration (IC~50~) and the minimum inhibiting concentration (MIC) are 0.15 and 10 µM, respectively. The inhibition effect of PNA(G1138) in vitro is somewhat lower than that of tetracycline (IC~50~ = 0.12 µM), but the MIC of peptide‐PNA(G1138) against Escherichia coli is significantly higher than that of tetracycline (MIC = 4 µM). Further studies based on similar colony‐forming unit (CFU) assays showed that peptide‐PNA(G1138) at 10 µM is bactericidal, but the bactericidal effect is less effective than that of tetracycline. Nevertheless, the results demonstrated that the peptide‐PNA(G1138) treatment is bactericidal in a dose‐ and sequence‐dependent manner and that the G1138 site of 23S rRNA is a possible sequence target for designing novel PNA‐based antibiotics. Copyright © 2007 European Peptide Society and John Wiley & Sons, Ltd.


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