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一种影响新霉素对质粒的维持、转移及消除作用的质粒突变的特性分析

Characterization of a plasmid mutation affecting maintenance, transfer and elimination by novobiocin.

作者信息

Taylor D E, Levine J G

出版信息

Mol Gen Genet. 1979 Jul 13;174(2):127-33. doi: 10.1007/BF00268350.

Abstract

We have isolated a mutant H group plasmid temperature-sensitive for plasmid maintenance. Unlike the wild type plasmid (pSD114), the mutant (pDT4) was eliminated at 37 degrees C and also at 30 degrees C after novobiocin treatment. The mutant plasmid interfered with host cell growth at the non-permissive temperature. Conjugative transfer of the mutant was reduced at 30 degrees C compared to the wild-type plasmid. Introduction of a coumermycin-novobiocin resistance DNA gyrase (cou) mutation into Escherichia coli prevented pDT4 elimination by novobiocin but did not affect the temperature-sensitive phenotype. The evidence indicates that the mutant plasmid used bacterial DNA gyrase for replication. Models to account for the behaviour of this unusual mutant are discussed.

摘要

我们分离出了一种对质粒维持具有温度敏感性的H组突变体质粒。与野生型质粒(pSD114)不同,突变体质粒(pDT4)在37℃以及新霉素处理后的30℃下都会被消除。该突变体质粒在非允许温度下会干扰宿主细胞生长。与野生型质粒相比,该突变体质粒在30℃时的接合转移减少。将香豆霉素 - 新霉素抗性DNA促旋酶(cou)突变引入大肠杆菌可防止新霉素消除pDT4,但不影响温度敏感表型。证据表明,该突变体质粒利用细菌DNA促旋酶进行复制。文中讨论了解释这种异常突变体行为的模型。

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