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一种ATP结合盒转运蛋白和两种rRNA甲基转移酶参与了产抗生素的绿色产色链霉菌Tü57对阿维拉霉素的抗性。

An ATP-binding cassette transporter and two rRNA methyltransferases are involved in resistance to avilamycin in the producer organism Streptomyces viridochromogenes Tü57.

作者信息

Weitnauer G, Gaisser S, Trefzer A, Stockert S, Westrich L, Quiros L M, Mendez C, Salas J A, Bechthold A

机构信息

Pharmazeutische Biologie, Pharmazeutisches Institut, Christian Albrechts Universität zu Kiel, 24118 Kiel, Germany.

出版信息

Antimicrob Agents Chemother. 2001 Mar;45(3):690-5. doi: 10.1128/AAC.45.3.690-695.2001.

Abstract

Three different resistance factors from the avilamycin biosynthetic gene cluster of Streptomyces viridochromogenes Tü57, which confer avilamycin resistance when expressed in Streptomyces lividans TK66, were isolated. Analysis of the deduced amino acid sequences showed that AviABC1 is similar to a large family of ATP-binding transporter proteins and that AviABC2 resembles hydrophobic transmembrane proteins known to act jointly with the ATP-binding proteins. The deduced amino acid sequence of aviRb showed similarity to those of other rRNA methyltransferases, and AviRa did not resemble any protein in the databases. Independent expression in S. lividans TK66 of aviABC1 plus aviABC2, aviRa, or aviRb conferred different levels of resistance to avilamycin: 5, 10, or 250 microg/ml, respectively. When either aviRa plus aviRb or aviRa plus aviRb plus aviABC1 plus aviABC2 was coexpressed in S. lividans TK66, avilamycin resistance levels reached more than 250 microg/ml. Avilamycin A inhibited poly(U)-directed polyphenylalanine synthesis in an in vitro system using ribosomes of S. lividans TK66(pUWL201) (GWO), S. lividans TK66(pUWL201-Ra) (GWRa), or S. lividans TK66(pUWL201-Rb) (GWRb), whereas ribosomes of S. lividans TK66 containing pUWL201-Ra+Rb (GWRaRb) were highly resistant. aviRa and aviRb were expressed in Escherichia coli, and both enzymes were purified as fusion proteins to near homogeneity. Both enzymes showed rRNA methyltransferase activity using a mixture of 16S and 23S rRNAs from E. coli as the substrate. Coincubation experiments revealed that the enzymes methylate different positions of rRNA.

摘要

从绿色产色链霉菌Tü57的阿维拉霉素生物合成基因簇中分离出三种不同的抗性因子,当它们在变铅青链霉菌TK66中表达时可赋予对阿维拉霉素的抗性。对推导的氨基酸序列分析表明,AviABC1与一大类ATP结合转运蛋白相似,而AviABC2类似于已知与ATP结合蛋白共同作用的疏水跨膜蛋白。推导的aviRb氨基酸序列与其他rRNA甲基转移酶的序列相似,而AviRa与数据库中的任何蛋白质都不相似。aviABC1加aviABC2、aviRa或aviRb在变铅青链霉菌TK66中的独立表达赋予了对阿维拉霉素不同水平的抗性:分别为5、10或250μg/ml。当aviRa加aviRb或aviRa加aviRb加aviABC1加aviABC2在变铅青链霉菌TK66中共表达时,阿维拉霉素抗性水平达到250μg/ml以上。阿维拉霉素A在使用变铅青链霉菌TK66(pUWL201)(GWO)、变铅青链霉菌TK66(pUWL201-Ra)(GWRa)或变铅青链霉菌TK66(pUWL201-Rb)(GWRb)核糖体的体外系统中抑制多聚(U)指导的聚苯丙氨酸合成,而含有pUWL201-Ra+Rb的变铅青链霉菌TK66核糖体(GWRaRb)具有高度抗性。aviRa和aviRb在大肠杆菌中表达,两种酶都作为融合蛋白纯化至接近均一。两种酶都以大肠杆菌的16S和23S rRNA混合物为底物显示出rRNA甲基转移酶活性。共孵育实验表明,这些酶使rRNA的不同位置甲基化。

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