首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >22-NBD-cholesterol as a novel fluorescent substrate for cholesterol-converting oxidoreductases
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22-NBD-cholesterol as a novel fluorescent substrate for cholesterol-converting oxidoreductases

机译:22-NBD-胆固醇作为胆固醇转化氧化酶的新型荧光基底

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摘要

Docking simulations and experimental data indicate that 22-(N-(7-nitrobenz-2-oxa-l,3-diazoI-4-yl)amino)-23,24-bisnor-5-cholen-3beta-ol (22-NBD-cholesterol), a common fluorescent sterol analog, binds into active sites of bovine cytochrome P450scc and microbial cholesterol dehydrogenases (CHDHs) and then undergoes regiospecific oxidations by these enzymes. The P450scc-dependent system was established to realize iV-dealkylation activity toward 22-NBD-cholesterol, resulting in 7-nitrobenz[c][l,2,5]oxadiazole-4-amine (NBD-NH_2) formation as a dominant fluorescent product. Basing on LC-MS data of the probes derivatized with hydroxylamine or cholesterol oxidase, both pregneno-lone and 20-formyl-pregn-5-en-3beta-ol were deduced to be steroidal co-products of NBD-NH_2, indicating intricate character of the reaction. Products of CHDH-mediated conversions of 22-NBD-cholesterol were defined as 3-oxo-4-en and 3-oxo-5-en derivatives of the steroid. Moreover, the 3-oxo-4-en derivative was also found to be formed after 22-NBD-cholesterol incubation with pathogenic bacterium Pseudomonas aeruginosa, indicating a possible application of the reaction for a selective and sensitive detection of some microbes. The 3-keto-4-en derivative of 22-NBD-cholesterol may be also suitable as a new fluorescent probe for steroid hormone-binding enzymes or receptors.
机译:对接模拟和实验数据表明22-(N-(7-硝基苯-2-氧气-1,3-二氮-4-基)氨基)-23,24-Bisnor-5-胆管-3β-OL(22- NBD-胆固醇),一种常见的荧光甾醇类似物,结合牛细胞色素P450SCC和微生物胆固醇脱氢酶(CHDHS)的活性位点,然后通过这些酶进行细胞氧化。建立了P450SCC依赖性系统以实现朝向22-NBD-胆固醇的IV-癸烷基化活性,得到7-硝基根[C] [1,2,5]氧代唑-4-胺(NBD-NH_2)形成为优势荧光产品。基于用羟胺或胆固醇氧化酶衍生的探针的LC-MS数据,被推导出孕烯醇和20-甲酰氨基-5-烯-3Beta-OL是NBD-NH_2的甾体共同产物,表明复杂性反应。 CHDH介导的22-NBD-胆固醇的转化的产物定义为类固醇的3-氧代-4-烯和3氧代-5-烯衍生物。此外,还发现3-氧代-4-苯衍生物在与致病性细菌假单胞菌铜绿假单胞菌孵育22-NBD-胆固醇培养后形成,表明可能施加反应用于对一些微生物的选择性和敏感性检测。 22-Nbd-胆固醇的3-keto-4-烯衍生物也可以作为类固醇激素结合酶或受体的新荧光探针。

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