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首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Secondary Metabolites from Endophytic Fungus Penicillium pinophilum Induce ROS-Mediated Apoptosis through Mitochondrial Pathway in Pancreatic Cancer Cells
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Secondary Metabolites from Endophytic Fungus Penicillium pinophilum Induce ROS-Mediated Apoptosis through Mitochondrial Pathway in Pancreatic Cancer Cells

机译:内生真菌pinicillium pinophilum的次级代谢产物通过线粒体途径在胰腺癌细胞中诱导ROS介导的凋亡。

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The endophytic fungus strain MRCJ-326, isolated from Allium schoenoprasum, which is also known as Snow Mountain Garlic or Kashmiri garlic, was identified as Penicillium pinophilum on the basis of morphological characteristics and internal transcribed spacer region nucleotide sequence analysis. The endophytic fungus extract was subjected to 2D-SEPBOX bioactivity-guided fractionation and purification. The anthraquinone class of the bioactive secondary metabolites were isolated and characterized as oxyskyrin (1), skyrin (2), dicatenarin (3), and 1,6,8-trihydroxy-3-hydroxy methylanthraquinone (4) by spectral analysis. Dicatenarin and skyrin showed marked growth inhibition against the NCI60/ATCC panel of human cancer cell lines with least IC50 values of 12 mu g/mL and 27 mu g/mL, respectively, against the human pancreatic cancer (MIA PaCa-2) cell line. The phenolic hydroxyl group in anthraquinones plays a crucial role in the oxidative process and bioactivity. Mechanistically, these compounds, i.e., dicatenarin and skyrin, significantly induce apoptosis and transmit the apoptotic signal via intracellular reactive oxygen species generation, thereby inducing a change in the mitochondrial transmembrane potential and induction of the mitochondrial-mediated apoptotic pathway. Our data indicated that dicatenarin and skyrin induce reactive oxygen species-mediated mitochondrial permeability transition and resulted in an increased induction of caspase-3 apoptotic proteins in human pancreatic cancer (MIA PaCa-2) cells. Dicatenarin showed a more pronounced cytotoxic/proapopotic effect than skyrin due to the presence of an additional phenolic hydroxyl group at C-4, which increases oxidative reactive oxygen species generation. This is the first report from P. pinophilum secreating these cytotoxic/proapoptotic secondary metabolites.
机译:从形态学特征和内部转录间隔区核苷酸序列分析的基础上,从葱属葱中分离出的内生真菌菌株MRCJ-326,也被称为雪山大蒜或克什米尔大蒜,被鉴定为嗜青霉。对内生真菌提取物进行2D-SEPBOX生物活性指导的分离和纯化。通过光谱分析分离蒽醌类的生物活性次生代谢物,并将其表征为羟丁草酸酯(1),skyrin(2),双catenarin(3)和1,6,8-三羟基-3-羟基甲基蒽醌(4)。 Dicatenarin和skyrin对人癌细胞系的NCI60 / ATCC组显示出显着的生长抑制作用,对人胰腺癌(MIA PaCa-2)细胞系的IC50值最低,分别为12μg/ mL和27μg/ mL。 。蒽醌中的酚羟基在氧化过程和生物活性中起着至关重要的作用。从机理上讲,这些化合物,即二catenarin和skyrin,通过细胞内活性氧的产生显着诱导细胞凋亡并传递细胞凋亡信号,从而诱导线粒体跨膜电位的改变并诱导线粒体介导的细胞凋亡途径。我们的数据表明,双catenarin和skyrin诱导活性氧介导的线粒体通透性转变,并导致人胰腺癌(MIA PaCa-2)细胞中caspase-3凋亡蛋白的诱导增加。与Caterin相比,Dicatenarin具有更显着的细胞毒性/促凋亡作用,这是由于在C-4处存在额外的酚羟基,从而增加了氧化活性氧的产生。这是P. pinophilum产生这些细胞毒性/促凋亡次生代谢产物的首次报道。

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