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Epigenetic modifications by polyphenolic compounds alter gene expression in the hippocampus

机译:多酚化合物的表观遗传修饰可改变海马中的基因表达

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In this study, we developed an experimental protocol leveraging enhanced reduced representation bisulphite sequencing to investigate methylation and gene expression patterns in the hippocampus in response to polyphenolic compounds. We report that the administration of a standardized bioavailable polyphenolic preparation (BDPP) differentially influences methylated cytosine patterns in introns, UTR and exons in hippocampal genes. We subsequently established that dietary BDPP-mediated changes in methylation influenced the transcriptional pattern of select genes that are involved in synaptic plasticity. In addition, we showed dietary BDPP mediated changes in the transcriptional pattern of genes associated with epigenetic modifications, including members of the DNA methyl transferase family (DNMTs) and the Ten-eleven translocation methylcytosine dioxygenases family (TETs). We then identified the specific brain bioavailable polyphenols effective in regulating the transcription ofDNMTs,TETsand a subset of differentially methylated synaptic plasticity-associated genes. The study implicates the regulation of gene expression in the hippocampus by epigenetic mechanisms as a novel therapeutic target for dietary polyphenols.
机译:在这项研究中,我们开发了一种实验方案,利用增强的减少的代表性亚硫酸氢盐测序来研究响应多酚化合物的海马中的甲基化和基因表达模式。我们报告,标准化的生物利用多酚制剂(BDPP)的管理差异影响内含子,UTR和海马基因外显子中的甲基化胞嘧啶模式。我们随后确定,饮食中BDPP介导的甲基化变化会影响涉及突触可塑性的所选基因的转录模式。此外,我们显示了膳食BDPP介导的与表观遗传修饰相关的基因转录模式的变化,包括DNA甲基转移酶家族(DNMT)和十一个11易位甲基胞嘧啶双加氧酶家族(TET)的成员。然后,我们确定了特定的脑可生物利用的多酚,可有效调节DNMT,TET和差异甲基化突触可塑性相关基因的子集的转录。该研究暗示通过表观遗传机制调节海马基因表达,将其作为膳食多酚的新型治疗靶标。

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