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通过固定化过氧化物酶体增殖物激活受体-γ从黄连花序中筛选生物活性化合物。

Screening the bioactive compound from Coptis chinensis inflorescence by immobilized peroxisome proliferator-activated receptor-gamma.

机构信息

sino-Jan Joint Lab of Natural Health Products Research, School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, P. R. China.

出版信息

J Sep Sci. 2022 Aug;45(15):2855-2864. doi: 10.1002/jssc.202101014. Epub 2022 Jun 14.

Abstract

Coptis chinensis inflorescence is a by-product of Coptis chinensis Franch and riches in alkaloids. We screened the bioactive compounds in the by-product through an immobilized peroxisome proliferator-activated receptor gamma. The receptor was covalently immobilized on the macroporous silica gel through amino groups to generate the affinity stationary phase and was applied for screening. Berberine, palmatine, and jatrorrhizine were identified as the retained components of the herb on the affinity column. We evaluated the binding of the three bioactive compounds with the receptor by nonlinear chromatography and molecular docking. The affinities of the compounds to the receptor were (1.42 ± 0.10) ×10 /M, (4.88 ± 0.38) ×10 /M, and (1.65 ± 0.13) ×10 /M for berberine, palmatine, and jatrorrhizine, with dissociation rate constants of (17.70 ± 0.03) ×10 /S, (5.18 ± 0.25) ×10 /S, and (15.7 ± 0.05) ×10 /S, respectively. Cys285, Arg288, Ile326, Leu330, and His449 in the agonist binding pocket of the receptor participated in the formation of bioactive compound-receptor conjugates. These data indicated that the immobilized receptor is a reliable alternative for screening the bioactive compounds. In addition, Coptis chinensis inflorescence has the potential to be a source for drug discovery.

摘要

黄连花序是黄连的副产物,富含生物碱。我们通过固定化过氧化物酶体增殖物激活受体γ筛选了副产物中的生物活性化合物。通过氨基将受体共价固定在大孔硅胶上,生成亲和固定相并用于筛选。小檗碱、巴马汀和药根碱被鉴定为该草药在亲和柱上的保留成分。我们通过非线性色谱和分子对接评估了这三种生物活性化合物与受体的结合情况。化合物与受体的亲和力分别为(1.42 ± 0.10)×10 /M、(4.88 ± 0.38)×10 /M和(1.65 ± 0.13)×10 /M,对于小檗碱、巴马汀和药根碱的解离速率常数分别为(17.70 ± 0.03)×10 /S、(5.18 ± 0.25)×10 /S和(15.7 ± 0.05)×10 /S。受体激动剂结合口袋中的 Cys285、Arg288、Ile326、Leu330 和 His449 参与了生物活性化合物-受体缀合物的形成。这些数据表明,固定化受体是筛选生物活性化合物的可靠替代品。此外,黄连花序有可能成为药物发现的来源。

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