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首页> 外文期刊>Journal of bacteriology >Streptomyces relC mutants with an altered ribosomal protein ST-L11 and genetic analysis of a Streptomyces griseus relC mutant.
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Streptomyces relC mutants with an altered ribosomal protein ST-L11 and genetic analysis of a Streptomyces griseus relC mutant.

机译:具有改变的核糖体蛋白ST-L11的链霉菌relC突变体和灰链霉菌relC突变体的遗传分析。

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Several relaxed (rel) mutants have been obtained from Streptomyces species by selecting colonies resistant to thiopeptin, an analogue of thiostrepton. Using two-dimensional gel electrophoresis, I compared the ribosomal proteins from rel and rel+ pairs of S. antibioticus, S. lavendulae, S. griseoflavus, and S. griseus. It was found that all of the Streptomyces rel mutants thus examined had an altered or missing ribosomal protein, designated tentatively ST-L11. These rel mutants therefore could be classified as relC mutants and were highly sensitive to erythromycin or high temperature. A relC mutant of S. griseus was defective in streptomycin production, but phenotypic reversion of this defect to normal productivity was found at high incidence among progeny of the relC mutant. This phenotypic reversion did not accompany a reappearance of ribosomal protein ST-L11, and furthermore the ability of accumulating ppGpp still remained at a low level, thus suggesting existence of a mutation (named sup) which suppresses the streptomycin deficiency phenotype exhibited by the relC mutant. Genetic analysis revealed that there is a correlation between the rel mutation and the inability to produce streptomycin or aerial mycelia. The sup mutation was found to lie at a chromosomal locus distinct from that of the relC mutation. It was therefore concluded that the dependence of streptomycin production on the normal function of the relC gene could be entirely bypassed by a mutation at the suppressor locus (sup). The suppressing effect of the sup mutation on the relC mutation was blocked when the afs mutation (defective in A-factor synthesis) was introduced into a relC sup double mutant. It is proposed that the sup gene or its product can be direct or indirect target for ppGpp.
机译:通过选择对硫代肽素(一种硫代链霉菌素的类似物)具有抗性的菌落,已从链霉菌属物种中获得了几个轻松的(rel)突变体。我使用二维凝胶电泳,比较了抗生素链球菌,薰衣草链球菌,灰链霉菌和灰链霉菌的rel和rel +对的核糖体蛋白。发现如此检查的所有链霉菌属rel突变体具有改变的或缺失的核糖体蛋白,暂定为ST-L11。因此,这些rel突变体可以归类为relC突变体,并且对红霉素或高温高度敏感。灰链霉菌的relC突变体在链霉素生产中有缺陷,但是在relC突变体的后代中该缺陷的表型逆转为正常生产力。这种表型逆转并未伴随核糖体蛋白ST-L11的重新出现,而且ppGpp的累积能力仍然保持较低水平,因此表明存在抑制relC突变体表现出的链霉素缺乏表型的突变(命名为sup)。 。遗传分析表明,rel突变与无法产生链霉素或气生菌丝体之间存在相关性。发现sup突变位于与relC突变不同的染色体位点。因此得出结论,链霉素产生对relC基因正常功能的依赖性可以完全被抑制基因座(突变)处的突变所绕开。当将afs突变(在A因子合成中有缺陷)引入到relC sup双突变体中时,sup突变对relC突变的抑制作用被阻断。建议sup基因或其产物可以是ppGpp的直接或间接靶标。

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