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首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >Multiple Operons Connected with Catabolism of Aromatic Compounds in Acinetobacter sp. Strain ADP1 are under Carbon Catabolite Repression
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Multiple Operons Connected with Catabolism of Aromatic Compounds in Acinetobacter sp. Strain ADP1 are under Carbon Catabolite Repression

机译:不动杆菌属中与芳香族化合物分解代谢相关的多个操纵子菌株ADP1受碳分解代谢抑制

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摘要

Repression of enzymes contributing the degradation of aromatic compounds via the β-ketoadipate pathway in the presence of additional carbon sources (carbon catabolite repression) in the bacterium Acinetobacter sp. strain ADP1 is described. The phenomenon was investigated on the level of specific activity of protocatechuate 3,4-dioxygenase and p-hydroxybenzoate hydroxylase participating in catabolism of protocatechuate and p-hydroxybenzoate. Strong repression (90%) was found in cells grown on succinate and acetate in addition to the aromatic carbon source; partial derepression occurred towards the end of the logarithmic growth phase. Glucose, pyruvate, or lactate as secondary carbon sources had no repressing effect. The consumption of the aromatic substrate from the medium was delayed in the presence of acetate and succinate. The differences in specific enzyme activities were reflected at the transcript level for three operons connected to catabolism of aromatic compounds (pob, pca, van) as shown by Northern blot hybridization. Transcriptional fusions between the promoters of the pob and the pca operon identified the transcriptional level as the regulatory one. A mechanism of global regulation is postulated, which enables the organism to consume the offered carbon sources hierarchically in the most efficient manner.
机译:在不动杆菌属细菌中存在其他碳源的情况下,抑制酶通过β-酮己二酸途径降解芳香族化合物(抑制碳分解代谢物)。描述了菌株ADP1。对原儿茶酸3,4-二加氧酶和对羟基苯甲酸酯羟化酶参与原儿茶酸和对羟基苯甲酸酯分解代谢的比活性水平进行了研究。除芳香族碳源外,在琥珀酸和乙酸盐上生长的细胞中发现了强抑制作用(90%)。在对数生长期结束时发生部分抑制。葡萄糖,丙酮酸或乳酸作为次要碳源没有抑制作用。在乙酸盐和琥珀酸盐的存在下,从培养基中消耗芳香族底物被延迟。如Northern印迹杂交所示,在与芳香族化合物(pob,pca,van)分解代谢有关的三个操纵子的转录水平上反映了特定酶活性的差异。 pob启动子和pca操纵子之间的转录融合确定了转录水平为调控水平。提出了一种全球监管机制,该机制使生物能够以最有效的方式分层消耗提供的碳源。

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