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首页> 外文期刊>Zeitschrift fur Naturforschung, C. A Journal of Biosciences >ISOMERIZATION OF 3,4-DIALKYL-1,3,4-THIADIAZOLIDINES AND 3,4-ALKYLENE-1,3,4-THIADIAZOLIDINES BY GLUTATHIONE S-TRANSFERASE
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ISOMERIZATION OF 3,4-DIALKYL-1,3,4-THIADIAZOLIDINES AND 3,4-ALKYLENE-1,3,4-THIADIAZOLIDINES BY GLUTATHIONE S-TRANSFERASE

机译:3,4-二烷基-1,3,4-噻二唑啉和3,4-亚烷基-1,3,4-噻二唑啉的异构化通过谷胱甘肽S-转移酶

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Peroxidizing herbicides, as inhibitors of protoporphyrinogen IX oxidase (protox), cause accumulation of protoporphyrin IX and lead to a rapid phytotoxic degradation of plant cell membranes in the light. Certain 5-arylimino-3,4-tetramethylene-1,3,4-thiadiazolidin-2-ones are peroxidizing compounds. They are isomerized to the corresponding more active triazolidines with glutathione S-transferase (GST) in the presence of reduced glutathione (GSH). The rate of isomerization depends on the arylimino moiety and the presence of carbonyl or thiocarbonyl groups at the thiadiazolidine ring. The following compounds and their isomeric triazolidines were synthesized: 5-(4-Bromophenyl)-3,4-dialkyl-1,3,4-thiadiazolidin-2-ones (I), 5-(4-bromophenyl)-3,4-dialkyl-1,3,4-thiadiazolidine-2-thiones (II), 5-(4-bromophenyl)-3,4-alkylene-1,3,4-thiadiazolidin-2-ones (III), 5-(4-bromophenyl)-3,4-alkylene-1,3,4-thiadiazolidine-2-thiones (IV). The phytotoxic activities of these compounds were investigated using Scenedesmus acutus and protoporphyrinogen IX oxidase isolated from corn (Zea mays) etioplasts. These compounds are peroxidizing compounds, and the triazolidines showed higher activity than the thiadiazolidines. Compounds I and III were isomerized to the corresponding triazolidines, while compounds II and IV were not or scarcely converted into their isomers with GST in the presence of GSH. Seemingly, the bulkiness of alkylene or dialkyl groups at the heterocycle influences the isomerization of carbonyl-substituted thiadiazolidines. [References: 14]
机译:过氧化除草剂,作为原子卟啉IX氧化酶(Protox)的抑制剂,导致原因卟啉IX的积累,并导致光线中的植物细胞膜的快速植物毒性降解。某些5-芳基氨基-3,4-四亚甲基-1,3,4-噻唑烷蛋白-2-氧化物化合物。它们在降低的谷胱甘肽(GSH)存在下与谷胱甘肽S-转移酶(GST)相同的更具活性三唑酯。异构化率取决于芳基氨基部分和噻二唑烷环处的羰基或硫代羰基的存在。合成以下化合物及其异构三唑啉:5-(4-溴苯基)-3,4-二烷基-1,3,4-噻二唑烷-2-α(I),5-(4-溴苯基)-3,4 -dialkyl-1,3,4-噻二唑烷-2-酮(II),5-(4-溴苯基)-3,4-亚烷基-1,3,4-噻二唑烷-2-α(III),5-( 4-溴苯基)-3,4-亚烷基-1,3,4-噻二唑烷-2-酮(IV)。使用Scenedesmus穴位和原卟啉原IX氧化酶研究了这些化合物的植物毒性活性。这些化合物是过氧化化合物,三唑啉表现出比噻二唑啉的活性更高。将化合物I和III异构化为相应的三唑啉,而化合物II和IV在GSH存在下没有或在GSH存在下没有或几乎没有转化为其异构体。似乎,杂环中亚烷基或二烷基的大部分影响了羰基取代的噻唑烷的异构化。 [参考:14]

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