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Prohexadione, a plant growth regulator, inhibits histone lysine demethylases and modulates epigenetics

机译:前己二酮,一种植物生长调节剂,抑制组蛋白赖氨酸脱甲基酶并调节表观遗传学

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Background: Epigenetic modifications, particularly DNA methylation and posttranslational histone modifications regulate heritable changes in transcription without changes in the DNA sequence. Despite a number of studies showing clear links between environmental factors and DNA methylation, little is known about the effect of environmental factors on the recently identified histone lysine methylation. Since their identification numerous studies have establish critical role played by these enzymes in mammalian development. Objectives: Identification of the Jumonji (Jmj) domain containing histone lysine demethylase have added a new dimension to epigenetic control of gene expression by dynamic regulation of histone methylation marks. The objective of our study was to evaluate the effect of prohexadione and trinexapac, widely used plant growth regulators of the acylcyclohexanediones class, on the enzymatic activity of histone lysine demethylases and histone modifications during the neural stem/progenitor cell differentiation. Methods: Here we show that prohexadione, but not trinexapac, directly inhibits non-heme iron (II), 2-oxoglutarate-dependent histone lysine demethylase such as Jmjd2a. We used molecular modeling to show binding of prohexadione to Jmjd2a. We also performed in vitro demethylation assays to show the inhibitory effect of prohexadione on Jmjd2a. Further we tested this molecule in cell culture model of mouse hippocampal neural stem/progenitor cells to demonstrate its effect toward neuronal proliferation and differentiation. Results: Molecular modeling studies suggest that prohexadione binds to the 2-oxoglutarate binding site of Jmjd2a demethylase. Treatment of primary neural stem/progenitor cells with prohexadione showed a concentration dependent reduction in their proliferation. Further, the prohexadione treated neurospheres were induced toward neurogenic lineage upon differentiation. Conclusions: Our results describe an important chemico-biological interaction of prohexadione, in light of critical roles played by histone lysine demethylases in human health and diseases.
机译:背景:表观遗传修饰,特别是DNA甲基化和翻译后组蛋白修饰,可调节转录的遗传变化,而不会改变DNA序列。尽管有许多研究表明环境因素与DNA甲基化之间存在明确的联系,但对于环境因素对最近鉴定出的组蛋白赖氨酸甲基化的影响知之甚少。自从鉴定以来,许多研究已经确定了这些酶在哺乳动物发育中所起的关键作用。目的:鉴定含有组蛋白赖氨酸脱甲基酶的Jumonji(Jmj)结构域,通过动态调节组蛋白甲基化标记,为表观遗传控制基因表达增加了新的维度。我们研究的目的是评估在神经干/祖细胞分化过程中,己环酮二酮类广泛使用的植物生长调节剂原己二酮和抗倒酯对组蛋白赖氨酸脱甲基酶的酶活性和组蛋白修饰的影响。方法:在这里,我们显示前己二酮,但不是抗倒酯,直接抑制非血红素铁(II),2-氧戊二酸依赖性组蛋白赖氨酸脱甲基酶,例如Jmjd2a。我们使用分子建模来显示原己二酮与Jmjd2a的结合。我们还进行了体外脱甲基分析,以显示原己酮对Jmjd2a的抑制作用。此外,我们在小鼠海马神经干/祖细胞的细胞培养模型中测试了该分子,以证明其对神经元增殖和分化的作用。结果:分子建模研究表明,原己二酮与Jmjd2a脱甲基酶的2-氧代戊二酸酯结合位点结合。用原己二酮处理原代神经干/祖细胞显示出浓度依赖性的增殖减少。此外,在分化后,将原己二酮处理的神经球诱导向神经源性谱系。结论:鉴于组蛋白赖氨酸脱甲基酶在人类健康和疾病中的关键作用,我们的结果描述了原六酮的重要化学-生物学相互作用。

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