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首页> 外文期刊>Lipids >Analogs of squalene and oxidosqualene inhibit oxidosqualene cyclase of Trypanosoma cruzi expressed in Saccharomyces cerevisiae.
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Analogs of squalene and oxidosqualene inhibit oxidosqualene cyclase of Trypanosoma cruzi expressed in Saccharomyces cerevisiae.

机译:角鲨烯和氧化角鲨烯的类似物抑制在酿酒酵母中表达的克氏锥虫的氧化角鲨烯环化酶。

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摘要

Recently, a number of inhibitors of the enzyme oxidosqualene cyclase (OSC; EC 5.4.99.7), a key enzyme in sterol biosynthesis, were shown to inhibit in mammalian cells the multiplication of Trypanosoma cruzi, the parasite agent of Chagas' disease. The gene coding for the OSC of T. cruzi has been cloned and expressed in Saccharomyces cerevisiae. The expression in yeast cells could be a safe and easy model for studying the activity and the selectivity of the potential inhibitors of T. cruzi OSC. Using a homogenate of S. cerevisiae cells expressing T. cruzi OSC, we have tested 19 inhibitors: aza, methylidene, vinyl sulfide, and conjugated vinyl sulfide derivatives of oxidosqualene and squalene, selected as representative of different classes of substrate analog inhibitors of OSC. The IC50 values of inhibition (the compound concentration at which the enzyme is inhibited by 50%) are compared with the values obtained using OSC of pig liver and S. cerevisiae. Many inhibitors of pig liver and S. cerevisiae OSC show comparable IC50 for T. cruzi OSC, but some phenylthiovinyl derivatives are 10-100 times more effective on the T. cruzi enzyme than on the pig or S. cerevisiae enzymes. The expression of proteins of pathogenic organisms in yeast seems very promising for preliminary screening of compounds that have potential therapeutic activity.
机译:最近,显示出多种固醇生物合成中的关键酶氧化角鲨烯环化酶(OSC; EC 5.4.99.7)的抑制剂在哺乳动物细胞中抑制了恰加斯氏锥虫(查加斯氏病的寄生虫)的繁殖。已经克隆了编码克鲁维酵母的OSC的基因,并在酿酒酵母中表达。酵母细胞中的表达可能是研究克氏锥虫OSC潜在抑制剂的活性和选择性的安全简便模型。我们使用表达T. cruzi OSC的酿酒酵母细胞匀浆测试了19种抑制剂:氧化角鲨烯和角鲨烯的氮杂,亚甲基,乙烯基硫化物和共轭乙烯基硫化物衍生物,它们被选作OSC不同底物类似物抑制剂的代表。将抑制的IC50值(该酶被抑制50%的化合物浓度)与使用猪肝和酿酒酵母的OSC获得的值进行比较。许多猪肝和酿酒酵母OSC抑制剂对克鲁斯克鲁维酵母OSC的IC50相当,但某些苯硫基乙烯基衍生物对克鲁斯酵母的有效性是对猪或啤酒酵母酶的10-100倍。病原微生物蛋白质在酵母中的表达对于初步筛选具有潜在治疗活性的化合物似乎非常有希望。

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