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Indole trimers with antibacterial activity against Gram-positive organisms produced using combinatorial biocatalysis

机译:具有组合生物催化作用的吲哚三聚体对革兰氏阳性生物具有抗菌活性

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摘要

The I100V isoform of toluene-4-monooxygenase was used to catalyze the oxidative polymerization of anthranil and various indoles under mildly acidic conditions, favoring the production of trimers. Compounds produced in sufficient yield were purified and tested for their ability to inhibit the growth of B. anthracis, E. faecalis, L. monocytogenes, S. aureus, and in some cases, F. tularensis. 15 of the compounds displayed promising antibacterial activity (MIC < 5 µg/ml) against one or more of the strains tested, with the best MIC values being <0.8 µg/ml. All of these compounds had good selectivity, showing minimal cytotoxicity towards HepG2 cells. The structure was solved for six of the compounds that could be crystallized, revealing that minimally two classes of indole based trimers were produced. One compound class produced was a group of substituted derivatives of the natural product 2,2-bis(3-indolyl) indoxyl. The other group of compounds identified was classified as tryptanthrin-like compounds, all having multi-ring pendant groups attached at position 11 of tryptanthrin. One compound of particular interest, SAB-J85, had a structure that suggests that any compound, with a ring structure that can be activated by an oxygenase, might serve as a substrate for combinatorial biocatalysis.
机译:甲苯-4-单加氧酶的I100V同工型用于在温和的酸性条件下催化蒽和各种吲哚的氧化聚合反应,有利于三聚体的生产。纯化以足够收率生产的化合物,并测试其抑制炭疽芽孢杆菌,粪肠球菌,单核细胞增生李斯特菌,金黄色葡萄球菌以及在某些情况下抑制土拉弗朗西斯菌的生长的能力。其中15种化合物显示出对一种或多种测试菌株的有希望的抗菌活性(MIC <5 µg / ml),最佳MIC值为<0.8 µg / ml。所有这些化合物具有良好的选择性,显示出对HepG2细胞的最小细胞毒性。解析了六种可能结晶的化合物的结构,表明最少生成了两类基于吲哚的三聚体。产生的一个化合物类别是一组天然产物2,2-双(3-吲哚基)吲哚的取代衍生物。鉴定出的另一组化合物被归类为类胰啡肽类化合物,所有化合物都具有连接在色胺酮上11位的多环侧基。一种特别令人感兴趣的化合物SAB-J85具有一种结构,该结构表明具有可被加氧酶激活的环结构的任何化合物都可以用作组合生物催化的底物。

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