首页> 外文OA文献 >Translational attenuation control of ermSF, an inducible resistance determinant encoding rRNA N-methyltransferase from Streptomyces fradiae.
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Translational attenuation control of ermSF, an inducible resistance determinant encoding rRNA N-methyltransferase from Streptomyces fradiae.

机译:ermSF的翻译衰减控制,ermSF是一种可诱导的抗性决定簇,编码来自链霉菌的rRNA N-甲基转移酶。

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摘要

An inducible resistance determinant, ermSF, from the tylosin producer Streptomyces fradiae NRRL 2338 has been cloned, sequenced, and shown to confer inducible macrolide-lincosamide-streptogramin B resistance when transferred to Streptomyces griseofuscus NRRL 23916. From mapping studies with S1 nuclease to locate the site of transcription initiation, the ermSF message contains a 385-nucleotide 5' leader sequence upstream from the 960-nucleotide major open reading frame that encodes the resistance determinant. On the basis of the potential secondary structure that the ermSF leader can assume, a translational attenuation model similar to that for ermC is proposed. The model is supported by mutational analysis involving deletions in the proposed attenuator. By analysis with restriction endonucleases, ermSF is indistinguishable from the tlrA gene described by Birmingham et al. (V. A. Birmingham, K. L. Cox, J. L. Larson, S. E. Fishman, C. L. Hershberger, and E. T. Seno, Mol. Gen. Genet. 204:532-539, 1986) which comprises one of at least three genes from S. fradiae that can confer tylosin resistance when subcloned into S. griseofuscus. When tested for inducibility, ermSF appears to be strongly induced by erythromycin, but not by tylosin.
机译:已克隆,测序了来自泰乐菌素生产者弗雷德氏链霉菌NRRL 2338的诱导型抗性决定子ermSF,并在将其转移至灰链霉菌NRRL 23916时赋予了诱导型大环内酯-林可酰胺-链霉菌素B的抗性。通过用S1核酸酶作图研究来定位在转录起始位点,ermSF信息在编码抗性决定簇的960核苷酸主要开放阅读框的上游包含385核苷酸的5'前导序列。基于ermSF领导者可以假定的潜在二级结构,提出了与ermC类似的平移衰减模型。该模型得到涉及衰减器中缺失的突变分析的支持。通过限制性核酸内切酶的分析,ermSF与Birmingham等人描述的tlrA基因没有区别。 (VA Birmingham,KL Cox,JL Larson,SE Fishman,CL Hershberger和ET Seno,Mol.Gen.Genet.204:532-539,1986),其包含至少三种可赋予泰乐菌素的基因,来自苦参。亚克隆到灰色链霉菌中时具有抗药性。当测试诱导性时,ermSF似乎是由红霉素强烈诱导的,但不是由泰乐菌素诱导的。

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    Kamimiya, S; Weisblum, B;

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  • 年度 1988
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