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Screening and Characterizing Tyrosinase Inhibitors from Salvia miltiorrhiza and Carthamus tinctorius by Spectrum-Effect Relationship Analysis and Molecular Docking

机译:光谱效应关系分析和分子对接技术筛选和鉴定丹参和红花酪氨酸酶抑制剂

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Tyrosinase (TYR) is a rate-limiting enzyme in the synthesis of melanin, while direct TYR inhibitors are a class of important clinical antimelanoma drugs. This study established a spectrum-effect relationship analysis method and high-performance liquid chromatography-mass spectrometry (LC-MS) analysis method to screen and identify the active ingredients that inhibited TYR in Salvia miltiorrhiza–Carthamus tinctorius (Danshen–Honghua, DH) herbal pair. Seventeen potential active compounds (peaks) in the extract of DH herbal pair were predicted, and thirteen of them were tentatively identified by LC-MS analysis. Furthermore, TYR inhibitory activities of five pure compounds obtained from the DH herbal pair were validated in the test in which kojic acid served as a positive control drug. Among them, three compounds including protocatechuic aldehyde, hydroxysafflor yellow A, and tanshinone IIA were verified to have high TYR inhibitory activity (IC50 value of 455, 498, and 1214 μM, resp.) and bind to the same amino acid residues in TYR catalytic pocket according to the results of the molecular docking test. However, the other two compounds lithospermic acid and salvianolic acid A had a weak effect on TYR, as they do not combine with the active amino acid residues or act on the active center of TYR. Therefore, the developed methods (spectrum-effect relationship analysis and molecular docking) could be used to effectively screen TYR inhibitors in complex mixtures such as natural products.
机译:酪氨酸酶(TYR)是黑色素合成中的限速酶,而直接的TYR抑制剂是一类重要的临床抗色素沉着瘤药物。本研究建立了一种光谱效应关系分析方法和高效液相色谱-质谱(LC-MS)分析方法,以筛选和鉴定抑制丹参—红萝卜(丹参—红花,DH)中的TYR的有效成分。对。预测了DH草药对提取物中的十七种潜在活性化合物(峰),并通过LC-MS分析初步鉴定了其中的十三种。此外,在曲酸作为阳性对照药物的试验中,验证了从DH草药对中获得的5种纯化合物的TYR抑制活性。其中,包括原儿茶醛,羟基红花黄A和丹参酮IIA在内的三种化合物经验证具有较高的TYR抑制活性(分别为IC50值为455、498和1214μM),并与TYR催化中的相同氨基酸残基结合根据分子对接试验的结果进行袋装。然而,其他两种化合物紫精酸和丹酚酸A对TYR的作用较弱,因为它们不与活性氨基酸残基结合或不作用于TYR的活性中心。因此,开发的方法(光谱效应关系分析和分子对接)可用于有效筛选复杂混合物(例如天然产物)中的TYR抑制剂。

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