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Identification of karanjin isolated from the Indian beech tree as a potent CYP1 enzyme inhibitor with cellular efficacy via screening of a natural product repository

机译:通过筛选天然产品储存库,从印度山毛榉树鉴定从印度山毛榉树中分离为有效的CYP1酶抑制剂

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CYP1A1 is thought to mediate carcinogenesis in oral, lung and epithelial cancers. In order to identify a CYP1A1 inhibitor from an edible plant, 394 natural products in the IIIM's natural product repository were screened, at 10 μM concentration, using CYP1A1-Sacchrosomes? (i.e. microsomal enzyme isolated from recombinant baker's yeast). Twenty-seven natural products were identified that inhibited 40-97% of CYP1A1's 7-ethoxyresorufin-O-deethylase activity. The IC_(50) values of the ‘hits', belonging to different chemical scaffolds, were determined. Their selectivity was studied against a panel of 8 CYP-Sacchrosomes?. In order to assess cellular efficacy, the ‘hits' were screened for their capability to inhibit CYP enzymes expressed within live recombinant human embryonic kidney (HEK293) cells from plasmids encoding specific CYP genes (1A2, 1B1, 2C9, 2C19, 2D6, 3A4). Isopimpinellin (IN-475; IC_(50), 20 nM) and karanjin (IN-195; IC_(50), 30 nM) showed the most potent inhibition of CYP1A1 in human cells. Isopimpinellin is found in celery, parsnip, fruits and in the rind and pulp of limes whereas different parts of the Indian beech tree, which contain karanjin, have been used in traditional medicine. Both isopimpinellin and karanjin negate the cellular toxicity of CYP1A1-mediated benzo[a]pyrene. Molecular docking and molecular dynamic simulations with CYP isoforms rationalize the observed trends in the potency and selectivity of isopimpinellin and karanjin.
机译:CYP1A1被认为在口腔,肺和上皮癌中介导致癌作用。为了鉴定来自可食用植物的CYP1A1抑制剂,使用CYP1A1-CACCHROSOMES以10μm浓度筛选IIM的天然产品储存库中的394个天然产物? (即从重组面包酵母中分离的微粒体酶)。鉴定了二十七种天然产物,抑制了40-97%的CYP1A1的7-乙醇磺酸盐-O-脱甲基酶活性。确定属于不同化学支架的“命中”的IC_(50)值。他们的选择性是针对8个CYP-SACCHROSOMES的研究?为了评估细胞功效,筛选“命中”的能力,以抑制来自编码特定CYP基因的质粒(1a2,1b1,2c9,2c19,2d6,3a4)的质粒中的活重组人胚胎肾(HEK293)细胞中表达的CYP酶的能力。 Isopiminellin(In-475; IC_(50),20nm)和卡兰津(195年; IC_(50),30nm)显示了人细胞中CYP1A1最有效的抑制。 Isopiminellin在芹菜,欧洲防风草原,水果和石灰的外皮和纸浆中发现,而印度山毛榉树的不同部位已被用于传统医学。 Isopiminellin和Karanjin都否定了CYP1A1介导的苯并[a]芘的细胞毒性。 CYP同种型的分子对接和分子动态模拟合理化Isopiminellin和Karanjin的效力和选择性的观察到趋势。

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