首页> 外文期刊>Applied and Environmental Microbiology >Atropine Metabolism by Pseudomonas sp. Strain AT3: Evidence for Nortropine as an Intermediate in Tropine Breakdown and Reactions Leading to Succinate.
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Atropine Metabolism by Pseudomonas sp. Strain AT3: Evidence for Nortropine as an Intermediate in Tropine Breakdown and Reactions Leading to Succinate.

机译:假单胞菌属阿托品代谢。菌株AT3:降冰片中间体和导致琥珀酸酯反应的证据-降冰片。

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摘要

Pseudomonas strain AT3, isolated by elective culture with atropine, hydrolyzed atropine and grew diauxically, first on the tropic acid and then on the tropine. Tropine was also used as a sole carbon and energy source. The methyl group of tropine was eliminated as formaldehyde, and the nortropine thus formed was a precursor of 6-hydroxycyclohepta-1,4-dione. Ammonia was detected as a product of nitrogen elimination. 6-Hydroxycyclohepta-1,4-dione was oxidized to cyclohepta-1,3,5-trione by an induced NAD(sup+)-specific dehydrogenase. Although cyclohepta-1,3,5-trione is a (beta)-diketone with two potential hydrolytic cleavage sites, an induced hydrolase was specific for one of these sites, with 4,6-dioxoheptanoate as the only hydrolysis product. Unlike the alternative cleavage product (3,6-dioxoheptanoate), this compound is also a (beta)-diketone, and a second hydrolytic cleavage formed succinate and acetone. Although Pseudomonas strain AT3 was not capable of growth with acetone, the compound was not detected in the culture medium and may have been lost to the atmosphere. Exhaustive experimentation with a wide range of conditions did not result in detection of the enzymes required for cleavage of the carbon-nitrogen bonds leading to the formation of nortropine and 6-hydroxycyclohepta-1,4-dione.
机译:通过与阿托品选择性培养分离的假单胞菌AT3,水解了阿托品,并在双生地生长,首先在托酸上,然后在托品上。 Tropine也被用作唯一的碳和能源。 tropine的甲基作为甲醛被消除,因此形成的nortropine是6-羟基环庚-1,4-二酮的前体。氨被检测为氮消除的产物。通过诱导的NAD(sup +)特异性脱氢酶将6-羟基环庚-1,4-二酮氧化成环庚-1,3,5-三酮。尽管环庚-1,3,5-三酮是具有两个潜在的水解裂解位点的β-二酮,但诱导的水解酶对其中一个位点具有特异性,只有4,6-二氧庚庚酸酯是唯一的水解产物。与替代的裂解产物(3,6-二氧杂庚酸酯)不同,该化合物也是β-二酮,第二次水解裂解形成了琥珀酸酯和丙酮。尽管假单胞菌AT3菌株不能与丙酮一起生长,但在培养基中未检测到该化合物,并且可能已损失到大气中。在各种条件下进行的穷举性试验未导致检测到切割碳氮键所需要的酶,从而导致形成了Nortropine和6-hydroxycyclohepta-1,4-dione。

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