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The β-ketoadipate pathway of Acinetobacter baylyi undergoes carbon catabolite repression, cross-regulation and vertical regulation, and is affected by Crc

机译:脓疱杆胸膜β-酮肽途径经历碳分子抑制,交叉调节和垂直调节,受CRC的影响

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The degradation of many structurally diverse aromatic compounds in Acinetobacter baylyi is accomplished by the β-ketoadipate pathway. In addition to specific induction of expression by certain aromatic compounds, this pathway is regulated by complex mechanisms at multiple levels, which are the topic of this study. Multiple operons feeding into the β-ketoadipate pathway are controlled by carbon catabolite repression (CCR) caused by succinate plus acetate. The pathways under study enable the catabolism of benzoate (ben), catechol (catA), cis,cis-muconate (catB,C,I,J,F,D), vanillate (van), hydroxycinnamates (hca), dicarboxylates (dca), salicylate (sal), anthranilate (ant) and benzyl esters (are). For analysis of CCR at the transcriptional level a luciferase reporter gene cassette was introduced into the operons. The Crc (catabolite repression control) protein is involved in repression of all operons (except for catA), as demonstrated by the analysis of respective crc strains. In addition, cross-regulation was demonstrated for the vanA,B, hca and dca operons. The presence of protocatechuate caused transcriptional repression of the vanA,B- and hca-encoded funnelling pathways (vertical regulation). Thus the results presented extend the understanding both of CCR and of the effects of Crc for all aromatic degradative pathways of A. baylyi and increase the number of operons known to be controlled by two additional mechanisms, cross-regulation and vertical regulation.
机译:通过β-酮壳型途径实现许多结构各种芳族化合物的降解是通过β-ketadipate途径完成的。除了通过某些芳族化合物表达的特异性诱导外,该途径由多个水平的复杂机制调节,这是本研究的主题。饲喂β-酮壳型途径的多个操纵子由琥珀酸盐加醋酸盐引起的碳分子抑制(CCR)控制。研究中的途径使得苯甲酸盐(Ben),儿茶酚(CATA),CIS,CIS-CONONATE(CATB,C,I,J,F,D),Vanillate(VAR),羟基凝集(HCA),二羧酸酯(DCA)的分解代谢),水杨酸盐(SAL),邻苯乙烯酯(蚁)和苄酯(是)。对于转录水平的CCR分析,将荧光素酶报告基因盒引入调音器中。 CRC(分子抑制控制)蛋白参与抑制所有操纵(CATA除外),如各种CRC菌株的分析所证明。此外,逆调节用于Vana,B,HCA和DCA操纵子。 Protocatech的存在导致Vana,B-和HCA和HCA编码漏斗途径(垂直调节)的转录抑制。因此,结果介绍了CCR的理解和CRC对A.贝利的所有芳族降解途径的影响,并增加了通过两种附加机制,交叉调节和垂直调节来控制的操纵子的数量。

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