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Molecular Characterization of the Growth Phase-Dependent Expression of the lsrA Gene, Encoding Levansucrase of Rahnella aquatilis

机译:lsrA基因的生长阶段依赖性表达的分子特征,该基因编码水生无节菌的水平蔗糖酶。

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摘要

Expression of the lsrA gene from Rahnella aquatilis, encoding levansucrase, is tightly regulated by the growth phase of the host cell; low-level expression was observed in the early phase of cell growth, but expression was significantly stimulated in the late phase. Northern blot analysis revealed that regulation occurred at the level of transcription. The promoter region was identified by primer extension analysis. Two opposite genetic elements that participate in the regulation of lsrA expression were identified upstream of the lsrA gene: the lsrS gene and the lsrR region. The lsrS gene encodes a protein consisting of 70 amino acid residues (Mr, 8,075), which positively activated lsrA expression approximately 20-fold in a growth phase-dependent fashion. The cis-acting lsrR region, which repressed lsrA expression about 10-fold, was further narrowed to two DNA regions by deletion analysis. The concerted action of two opposite regulatory functions resulted in the growth phase-dependent activation of gene expression in Escherichia coli independent of the stationary sigma factor σS.
机译:来自水生小轮虫的lsrA基因的表达,编码糖蔗糖酶,受宿主细胞的生长期严格调控。在细胞生长的早期阶段观察到低水平的表达,但是在晚期阶段表达被显着刺激。 Northern印迹分析表明调节发生在转录水平。通过引物延伸分析鉴定启动子区域。在lsrA基因的上游发现了两个参与调控lsrA表达的相反遗传因素:lsrS基因和lsrR区。 lsrS基因编码一个由70个氨基酸残基(Mr,8075)组成的蛋白质,该蛋白以生长相依赖的方式正向激活了lsrA表达约20倍。通过缺失分析,将抑制lsrA表达约10倍的顺式作用lsrR区域进一步缩小至两个DNA区域。两种相反调节功能的协同作用导致大肠杆菌中基因表达的生长阶段依赖性激活,而与静止sigma因子σS无关。

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