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首页> 外文期刊>Frontiers in Molecular Biosciences >Bioinformatic Prediction of Possible Targets and Mechanisms of Action of the Green Tea Compound Epigallocatechin-3-Gallate Against Breast Cancer
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Bioinformatic Prediction of Possible Targets and Mechanisms of Action of the Green Tea Compound Epigallocatechin-3-Gallate Against Breast Cancer

机译:绿茶化合物表没食子儿茶素-3-没食子酸酯对乳腺癌的可能靶标和作用机制的生物信息学预测。

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摘要

Epigallocatechin-3-gallate (EGCG), a bioactive compound in green tea, is the most abundant and biologically active catechin, and it exerts multiple effects in humans through mechanisms that remain to be clarified. The present study used bioinformatics to identify possible mechanisms by which EGCG reduces risk of breast cancer. Possible human protein targets of EGCG were identified in the PubChem database, possible human gene targets were identified in the NCBI database, and then both sets of targets were analyzed using Ingenuity Pathway Analysis to predict molecular networks affected by EGCG in breast cancer. The results suggest that signaling proteins affected by EGCG in breast cancer, which include JUN, FADD, NFKB1, Bcl-2, GNAO1, and MMP14, are involved primarily in cell death and survival; DNA replication, recombination and repair; and the cell cycle. The main networks affected by EGCG are predicted to involve the cell cycle; cellular assembly and organization; DNA replication, recombination and repair; and cell death and survival. These results identify several specific proteins and pathways that may be affected by EGCG in breast cancer, and they illustrate the power of integrative bioinformatics and chemical fragment analysis for focusing mechanistic studies.
机译:Epigallocatechin-3-gallate(EGCG)是绿茶中的一种生物活性化合物,是最丰富且具有生物活性的儿茶素,它通过尚待阐明的机制在人类中发挥多种作用。本研究使用生物信息学来确定EGCG降低乳腺癌风险的可能机制。在PubChem数据库中鉴定了可能的EGCG人类蛋白靶标,在NCBI数据库中鉴定了可能的人类基因靶标,然后使用Ingenuity Pathway Analysis分析了两组靶标,以预测乳腺癌中受EGCG影响的分子网络。结果表明乳腺癌中受EGCG影响的信号蛋白包括JUN,FADD,NFKB1,Bcl-2,GNAO1和MMP14,主要参与细胞的死亡和存活。 DNA复制,重组和修复;和细胞周期。预计受EGCG影响的主要网络涉及细胞周期。细胞组装和组织; DNA复制,重组和修复;和细胞死亡与生存。这些结果确定了乳腺癌中可能受到EGCG影响的几种特定蛋白质和途径,并且它们说明了整合生物信息学和化学片段分析对重点机理研究的作用。

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