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Regulation of pyrimidine nucleotide formation in Pseudomonas taetrolens ATCC 4683

机译:taetrolens ATCC 4683中嘧啶核苷酸形成的调控

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The regulation of the de novo pyrimidine biosynthetic enzymes in the food spoilage agent Pseudomonas taetrolens ATCC 4683 was investigated. The de novo pyrimidine biosynthetic enzyme activities were determined in P taetrolens ATCC 4683 cells and in cells from an auxotroph deficient for orotidine T-monophosphate decarboxylase activity. Pyrimidine supplementation to the culture medium affected the biosynthetic enzyme activities in ATCC 4683 cells. Transcriptional regulation of the biosynthetic pathway by pyrimidines was indicated after the auxotroph was subjected to pyrimidine limitation. At the level of enzyme activity, aspartate transcarbamoylase activity was strongly inhibited by pyrophosphate, ADP, ATP, UDP, UTP and GTP. Transcriptional regulation of pyrimidine synthesis in P taetrolens was not as highly controlled as in the taxonomicalty-related species Pseudomonas fragi although both species contained transcarbamoylase activities subject to significant nucleotide inhibition
机译:研究了腐败变质剂假单胞菌ATCC 4683中从头嘧啶生物合成酶的调控。在P. taetrolens ATCC 4683细胞和营养缺陷型的奥托替丁T-单磷酸脱羧酶活性不足的细胞中测定了从头嘧啶的生物合成酶活性。向培养基中添加嘧啶会影响ATCC 4683细胞中的生物合成酶活性。在营养缺陷型受到嘧啶限制后,表明了嘧啶对生物合成途径的转录调节。在酶活性水平上,天冬氨酸转氨甲酰酶活性被焦磷酸盐,ADP,ATP,UDP,UTP和GTP强烈抑制。 taetrolens中嘧啶合成的转录调控不如分类学相关物种Pseudomonas fragi那样严格控制,尽管两个物种都含有转氨甲酰酶活性,但受到显着的核苷酸抑制

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