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除草剂N-(膦酰基甲基)甘氨酸的作用机制:其对大肠杆菌生长及芳香族氨基酸生物合成中酶的影响(作者译)

[The mechanism of action of the herbicide N-(phosphonomethyl)glycine: its effect on the growth and the enzymes of aromatic amino acid biosynthesis in Escherichia coli (author's transl)].

作者信息

Roisch U, Lingens F

出版信息

Hoppe Seylers Z Physiol Chem. 1980 Jul;361(7):1049-58.

PMID:6105996
Abstract

N-(Phosphonomethyl) glycine prolongates the lag-phase and inhibits the growth rate of Escherichia coli, Salmonella typhimurium and Pseudomonas aureofaciens. The eucaryotes Saccharomyces cerevisiae and Neurospora crassa are not inhibited. The effect of growth inhibition in an E. coli culture depends on the time of the herbicide addition and no cells showing resistance against it are observed. The inhibitory effect can be overcome completely by a mixture of phenylalanine, tyrosine and tryptophan. N-(Phosphonomethyl)glycine inhibits phospho-2-oxo-3-deoxyheptonate aldolase and 3-dehydroquinate synthase. Both inhibitory effects are removed by addition of CO2. Chorismate mutase, prephenate dehydratase and prephenate dehydrogenase are not influenced by this herbicide. Anthranilate synthase is also inhibited by N-(phosphonomethyl)glycine. This inhibition is removed by addition of Mg2. Phospho-2-oxo-3-deoxyheptonate aldoase is derepressed in E. coli cells grown in minimal medium containing N-(phosphonomethyl)glycine. Under these conditions the tyrosine-sensitive isoenyme is much more strongly derepressed than the phenylalanine-sensitive isoenzyme. 3-Dehydroquinate synthase is not affected. Chorismate mutase, prephenate dehydrogenase, prephenate dehydratase, and anthranilate synthase are derepressed, but to a lesser extent.

摘要

N-(膦酰甲基)甘氨酸可延长大肠杆菌、鼠伤寒沙门氏菌和金黄色假单胞菌的迟滞期并抑制其生长速率。真核生物酿酒酵母和粗糙脉孢菌不受抑制。在大肠杆菌培养物中,生长抑制作用取决于除草剂添加的时间,未观察到对其具有抗性的细胞。苯丙氨酸、酪氨酸和色氨酸的混合物可完全克服这种抑制作用。N-(膦酰甲基)甘氨酸抑制磷酸-2-氧代-3-脱氧庚糖酸醛缩酶和3-脱氢奎尼酸合酶。添加二氧化碳可消除这两种抑制作用。分支酸变位酶、预苯酸脱水酶和预苯酸脱氢酶不受这种除草剂的影响。邻氨基苯甲酸合酶也受N-(膦酰甲基)甘氨酸抑制。添加镁离子可消除这种抑制作用。在含有N-(膦酰甲基)甘氨酸的基本培养基中生长的大肠杆菌细胞中,磷酸-2-氧代-3-脱氧庚糖酸醛缩酶被去阻遏。在这些条件下,酪氨酸敏感的同工酶比苯丙氨酸敏感的同工酶去阻遏程度更强。3-脱氢奎尼酸合酶不受影响。分支酸变位酶、预苯酸脱氢酶、预苯酸脱水酶和邻氨基苯甲酸合酶被去阻遏,但程度较小。

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