5-乙氧羰基-5-苯基-2-异恶唑啉的化学和生化转化

Irmina Zadrożna , Joanna Kurkowska , Hanna Kruszewska
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引用次数: 2

摘要

在C-3碳原子上含有不同取代基的2-甲基-5,5-二取代4,5-二氢异恶唑甲基硫酸盐盐进行了转化。所施化合物的结构允许监测该因素对2-异恶唑啉环转化过程的影响。在选定的盐中加入亲核的氰化物阴离子,可以得到一个新的杂环体系,与开始的2-异恶唑啉相比,其物理化学和生物性质发生了变化。Rhodococcus rhodochrous PCM 909菌株对2-异恶唑烷中的氰化物基团进行非对映选择性水解,得到反式羟基酸的外消旋混合物。在杂环中引入新的官能团使这些化合物成为进一步化学和微生物转化以及研究其生物活性的有吸引力的对象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical and biochemical transformations of 5-ethoxycarbonyl-5-phenyl-2-isoxazolines

The salts, 2-methyl-5,5-disubstituted 4,5-dihydroisoxazolium methylsulfates comprising various substituents at the C-3 carbon atom were subjected to transformations. The structure of applied compounds permitted to monitor the effect of this factor on the transformation course of the 2-isoxazoline ring. The nucleophilic addition of cyanide anion to the selected salts enabled the obtaining of a next heterocyclic system of changed physicochemical and biological properties in comparison to the starting 2-isoxazolines. The diastereoselective hydrolysis of the cyanide group in 2-isoxazolidines by the bacteria strain Rhodococcus rhodochrous PCM 909 leads to the obtaining of a racemic mixture of the trans-hydroxyacid. The introduction of new functional groups into the heterocyclic ring made these compounds attractive objects for further chemical and microbial transformations and to study their biological activity.

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