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首页> 外文期刊>Journal of bacteriology >Regulation of expression of pectate lyase genes pelA, pelD, and pelE in Erwinia chrysanthemi.
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Regulation of expression of pectate lyase genes pelA, pelD, and pelE in Erwinia chrysanthemi.

机译:菊花欧文氏菌中果胶酸裂解酶基因pelA,pelD和pelE表达的调节。

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The regulation of pelA, pelD, and pelE genes encoding three of the five major pectate lyase isoenzymes (PLa, PLd, and PLe) in Erwinia chrysanthemi B374 was analyzed by using genetic fusions to lacZ. These three genes are clustered on a 5-kilobase DNA fragment in the order pelD-pelE-pelA and constitute three independent transcriptional units. We localized the pelDEA cluster near the pro-1 marker on the genetic map of B374 by chromosomal mobilization with RP4::mini-Mu plasmid pULB110. Three classes of regulatory mutations responsible for constitutive pectate lyase synthesis have been described (kdgR, gpiR, and cri). We studied the effects of each mutation on pelE, pelD, and pelA expression independently. The mutations kdgR and gpiR mainly affect the expression of pelE and pelD, although PLa synthesis is slightly increased. The cri mutation results in a low level of constitutive expression of the three pel genes, but it is a pleiotropic mutation since other genes not involved in pectinolysis are also affected. In addition, we demonstrated that exuR, a negative regulatory gene governing the catabolism of hexuronates, does not modify the expression of pel genes. The frequency of gpiR or cri mutations (about 10(-8)) and the resulting constitutivity of pectate lyase synthesis suggest that these genes act as negative regulatory genes in addition to kdgR, which is already known to encode a repressor. Moreover, we found that expression of pel-lac fusions carried on pBR322 derivatives was higher in E. chrysanthemi than in Escherichia coli; this fact suggests the existence of positive regulation of pectate lyase synthesis in E. chrysanthemi.
机译:通过使用lacZ基因融合技术分析了欧文氏菊B374中编码五个主要果胶酸裂合酶同工酶(PLa,PLd和PLe)中的三个的pelA,pelD和pelE基因的调控。这三个基因以pelD-pelE-pelA的顺序聚集在一个5碱基碱基的DNA片段上,并构成三个独立的转录单位。我们通过用RP4 :: mini-Mu质粒pULB110进行染色体动员,将pelDEA簇定位在B374遗传图谱上pro-1标记附近。已经描述了负责组成型果胶酸裂合酶合成的三类调节突变(kdgR,gpiR和cri)。我们独立研究了每种突变对pelE,pelD和pelA表达的影响。突变kdgR和gpiR主要影响pelE和pelD的表达,尽管PLa合成略有增加。 cri突变导致这三个pel基因的组成型表达水平较低,但这是一种多效性突变,因为不参与果胶分解的其他基因也会受到影响。此外,我们证明了exuR,一种控制己糖酸酯分解代谢的负调控基因,不会改变pel基因的表达。 gpiR或cri突变的频率(大约10(-8))和果胶酸裂合酶合成的组成性表明,这些基因除了已知已编码阻遏物的kdgR之外,还作为负调控基因。此外,我们发现p.BR322衍生物携带的pel-lac融合蛋白在大肠杆菌中的表达高于大肠杆菌。这个事实表明在菊花大肠杆菌中存在果胶酸裂合酶合成的正调控。

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