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首页> 外文期刊>Microbiology >Pseudomonas putida CE2010 can degrade biphenyl by a mosaic pathway encoded by the tod operon and cmtE, which are identical to those of P. putida F1 except for a single base difference in the operator–promoter region of the cmt operon
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Pseudomonas putida CE2010 can degrade biphenyl by a mosaic pathway encoded by the tod operon and cmtE, which are identical to those of P. putida F1 except for a single base difference in the operator–promoter region of the cmt operon

机译:Pseudomonas Pieda Ce2010可以通过TOD操纵子和CMTE编码的马赛克途径降解Biphenyl,其与P. Pikida F1相同,除了CMT操纵子的操作员启动子区的单个基本差异

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Psudomonas putida CE2010 can assimilate biphenyl despite its high similarity to P. putida F1. Biphenyl degradation in strain CE2010 was achieved using a mosaic of pathways consisting of the cmt and tod operons. CmtE hydrolysed 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoic acid, the meta-cleavage product of 2,3-dihydroxybiphenyl. This enzyme was expressed differently in strains CE2010 and F1. A cmtE disruption mutant, a tod operon disruption mutant and a cmt operon disruption mutant were unable to utilize biphenyl. The introduction of the cmtE gene enabled the cmt operon disruption mutant to grow on biphenyl. A single base difference was found in the cmt promoter–operator region in strain CE2010, compared with that of strain F1. CymR protein was purified from Escherichia coli and binding assays were performed, the results of which suggested that the protein bound less strongly to the CE2010 operator sequence than to the F1 operator sequence. Exchanging the F1 promoter–operator fragment into strain CE2010 resulted in a loss of biphenyl degradation capacity. These results indicate that cmtE is not effectively repressed by CymR in strain CE2010, leading to low constitutive expression and, therefore, low growth on biphenyl.
机译:PSUDOMONAS PITIDA CE2010尽管它与P. PIDIDA F1高相似,但尽管其高度相似。使用由CMT和TOD操纵公说组成的途径的马赛克实现菌株CE2010中的联苯降解。 CMTE水解2-羟基-6-氧代-6-苯基釜2,4-己二酸,2,3-二羟基苯基的元切割产物。该酶在菌株Ce2010和F1中不同地表达。 CMET破坏突变体,TOD操纵子破坏突变体和CMT操纵子破坏突变体无法使用联苯。 CMET基因的引入使CMT操纵子破坏突变体在联苯上生长。与菌株F1的菌株CE2010中的CMT启动子操作员区域中发现了单个基差。从大肠杆菌中纯化Cymr蛋白,并进行结合测定,结果表明,该蛋白质粘合到CE2010操作员序列的强烈粘合而不是F1操作员序列。将F1启动子 - 操作员片段交换成菌株CE2010导致联苯降解能力的损失。这些结果表明CMTE在菌株CE2010中的CYMR没有有效地抑制,导致细胞型表达低,因此,联苯的低生长。

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