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23S rRNA结构域II中的突变促进了由23S rRNA编码的赋予红霉素抗性的五肽的翻译。

Mutations in domain II of 23 S rRNA facilitate translation of a 23 S rRNA-encoded pentapeptide conferring erythromycin resistance.

作者信息

Dam M, Douthwaite S, Tenson T, Mankin A S

机构信息

Department of Molecular Biology, Odense University, Denmark.

出版信息

J Mol Biol. 1996 May 31;259(1):1-6. doi: 10.1006/jmbi.1996.0296.

Abstract

Mutations in domain II of Escherichia coli 23 S rRNA that cause resistance to erythromycin do so in a manner fundamentally different from mutations at the drug binding site in domain V of the 23 S rRNA. The domain II mutations are located in a hairpin structure between nucleotides 1198 and 1247. This is close to a short open reading frame in the 23 S rRNA that encodes a pentapeptide (E-peptide) whose expression in vivo renders cells resistant to erythromycin. Therefore, a possible mechanism of resistance caused by domain II mutations may be related to an increased expression of the E-peptide. To test this hypothesis, a range of point mutations was generated in domain II of 23 S rRNA in the vicinity of the E-peptide open reading frame. We find a correlation between erythromycin resistance of the mutant clones and increased accessibility of the ribosome binding site of the E-peptide gene. Furthermore, the erythromycin resistance determinant in the mutants was shown to be confined to a small 23 S rRNA segment containing the coding region and the ribosome binding site of the E-peptide open reading frame. It thus appears that the domain II mutations mediate erythromycin resistance by increasing expression of the 23 S rRNA-encoded E-peptide.

摘要

大肠杆菌23S rRNA结构域II中导致对红霉素耐药的突变,其产生耐药的方式与23S rRNA结构域V中药物结合位点的突变根本不同。结构域II的突变位于1198至1247位核苷酸之间的发夹结构中。这接近23S rRNA中的一个短开放阅读框,该阅读框编码一种五肽(E肽),其在体内的表达使细胞对红霉素产生耐药性。因此,由结构域II突变引起的耐药性的一种可能机制可能与E肽表达增加有关。为了验证这一假设,在E肽开放阅读框附近的23S rRNA结构域II中产生了一系列点突变。我们发现突变克隆对红霉素的耐药性与E肽基因核糖体结合位点的可及性增加之间存在相关性。此外,突变体中的红霉素耐药决定因素被证明局限于一个小的23S rRNA片段,该片段包含E肽开放阅读框的编码区和核糖体结合位点。因此,结构域II突变似乎通过增加23S rRNA编码的E肽的表达来介导红霉素耐药性。

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