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天蓝色链霉菌A3(2)中十一烷基灵菌红素产生对bldA的依赖性涉及一条途径特异性调控级联反应。

bldA dependence of undecylprodigiosin production in Streptomyces coelicolor A3(2) involves a pathway-specific regulatory cascade.

作者信息

White J, Bibb M

机构信息

Department of Genetics, John Innes Centre, Norwich Research Park, Colney, United Kingdom.

出版信息

J Bacteriol. 1997 Feb;179(3):627-33. doi: 10.1128/jb.179.3.627-633.1997.

Abstract

The production of the red-pigmented tripyrrole antibiotic undecylprodigiosin (Red) by Streptomyces coelicolor A3(2) depends on two pathway-specific regulatory genes, redD and redZ. RedD is homologous to several other proteins that regulate antibiotic production in streptomycetes; RedZ is a member of the response regulator family. redZ transcripts were detected during exponential growth and increased in amount during transition and stationary phases; transcription of redD was confined to the two latter stages of growth. Whereas mutation of redD had no effect on redZ transcription, transcription of redD was highly dependent on redZ, suggesting that RedZ is a transcriptional activator of redD. bldA, which encodes the only tRNA of S. coelicolor that can efficiently translate the rare leucine codon UUA, is required for Red production at higher phosphate concentrations. While the redD transcript contains no UUA codons, the redZ mRNA contains one. Transcription of redZ appeared to be unaffected in a bldA mutant; in contrast, redD transcription was undetectable, consistent with the translational dependence of redZ on bldA and the transcriptional dependence of redD on redZ. Red production in a bldA mutant was restored by multiple copies of redZ, presumably reflecting a low level of mistranslation of the redZ UUA codon, while multiple copies of redD had no effect, presumably a consequence of the severe dependence of redD transcription on RedZ. Transcription of redZ appears to be negatively autoregulated.

摘要

天蓝色链霉菌A3(2)产生红色色素的三吡咯抗生素十一烷基灵菌红素(Red)依赖于两个途径特异性调控基因redD和redZ。RedD与其他几个调控链霉菌抗生素产生的蛋白质同源;RedZ是应答调节因子家族的成员。redZ转录本在指数生长期被检测到,在过渡阶段和稳定期数量增加;redD的转录局限于生长的后两个阶段。虽然redD的突变对redZ转录没有影响,但redD的转录高度依赖于redZ,这表明RedZ是redD的转录激活因子。bldA编码天蓝色链霉菌唯一能有效翻译稀有亮氨酸密码子UUA的tRNA,在较高磷酸盐浓度下产生Red需要它。虽然redD转录本不包含UUA密码子,但redZ mRNA包含一个。redZ的转录在bldA突变体中似乎不受影响;相反,redD转录无法检测到,这与redZ对bldA的翻译依赖性以及redD对redZ的转录依赖性一致。redZ的多个拷贝恢复了bldA突变体中的Red产生,推测这反映了redZ UUA密码子的低水平错义翻译,而redD的多个拷贝没有影响,推测这是redD转录严重依赖RedZ的结果。redZ的转录似乎受到负自调控。

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