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首页> 外文期刊>Journal of bacteriology >The bldB Gene Encodes a Small Protein Required for Morphogenesis, Antibiotic Production, and Catabolite Control inStreptomyces coelicolor
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The bldB Gene Encodes a Small Protein Required for Morphogenesis, Antibiotic Production, and Catabolite Control inStreptomyces coelicolor

机译:bldB基因编码链霉菌中形态发生,抗生素生产和分解代谢物控制所需的小蛋白质。

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Mutants blocked at the earliest stage of morphological development in Streptomyces species are called bld mutants. These mutants are pleiotropically defective in the initiation of development, the ability to produce antibiotics, the ability to regulate carbon utilization, and the ability to send and/or respond to extracellular signals. Here we report the identification and partial characterization of a 99-amino-acid open reading frame (ORF99) that is capable of restoring morphogenesis, antibiotic production, and catabolite control to all of the bldB mutants. Of the existing bld mutants, bldB is of special interest because the phenotype of this mutant is the most pleiotropic. DNA sequence analysis of ORF99 from each of the existingbldB mutants identified base changes either within the coding region of the predicted protein or in the regulatory region of the gene. Primer extension analysis identified an apparent transcription start site. A promoter fusion to the xylEreporter gene showed that expression of bldB is apparently temporally regulated and that the bldB gene product is involved in the regulation of its own expression.
机译:链霉菌物种的形态学发育的最早阶段被阻断的突变体称为 bld 突变体。这些突变体在发育的开始,产生抗生素的能力,调节碳利用的能力以及发送和/或响应细胞外信号的能力方面具有多效性缺陷。在这里,我们报告鉴定和部分特征的99个氨基酸的开放阅读框(ORF99),它能够恢复所有 bldB 突变体的形态发生,抗生素产生和分解代谢物控制。在现有的 bld 突变体中, bldB 具有特别的意义,因为该突变体的表型具有最强的多效性。来自每个现有的 bldB 突变体的ORF99的DNA序列分析确定了在预测蛋白的编码区内或基因调控区内的碱基变化。引物延伸分析鉴定出明显的转录起始位点。与 xylE 报告基因融合的启动子显示, bldB 的表达明显受到时间调控,而 bldB 基因产物参与了调控。它自己的表达。

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