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P/CAF-mediated spermidine acetylation regulates histone acetyltransferase activity

机译:P / CAF介导的硫代氨酸乙酰化调节组蛋白乙酰转移酶活性

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摘要

Histones and polyamines are important determinants of the chromatin structure. Histones form the core of nucleosome particles and their modification by acetylation of N-terminal tails is involved in chromatin structural changes and transcriptional regulation. Polyamines, including spermidine, are also targets of both cytoplasmic and nuclear acetylation, which in turn alters their affinity for DNA and nucleosomes. Previous studies report the interplay between polyamines metabolism and levels of histone acetylation, but the molecular basis of this effect is still unclear. In this work, we have analyzed the in vitro effect of spermidine on histone H3 acetylation catalyzed by P/CAF, a highly conserved histone acetyltransferase (HAT) (E.C. 2.3.1.48). We have observed that spermidine at very low concentrations activates P/CAF, while it has an inhibitory effect at concentrations higher than 4M. In addition, the in vitro bimodal effect of spermidine on histone H3 acetylation was also distinctly observed in vivo on polytene chromosomes of Drosophila melanogaster. We also performed kinetic studies indicating that the activating effect of low spermidine concentrations on P/CAF-HAT activity is based on its involvement as a substrate for P/CAF to produce N-8-acetylspermidine that is able in turn to increase the enzyme activity up to four fold.
机译:组蛋白和多胺是染色质结构的重要决定因素。组蛋白形成核心小颗粒的核心,并通过N-末端尾乙酰化的改性参与染色质结构变化和转录调节。多胺(包括亚胺)也是细胞质和核酰乙酰化的靶标,这反过来改变了对DNA和核肉的亲和力。以前的研究报告了多胺代谢与组蛋白乙酰化水平之间的相互作用,但这种效果的分子基础尚不清楚。在这项工作中,我们已经分析了P / CAF,高度保守的组氨酸乙酰转移酶(帽子)(例如2.3.1.48)催化的组蛋白对组蛋白H3乙酰化的体外效果。我们观察到,非常低浓度的亚精亚胺激活p / caf,而它在高于4m的浓度下具有抑制作用。此外,在果蝇果蝇的聚对染色体上,还在体内观察到亚胺氨基胺对组蛋白H3乙酰化的体外双峰效应。我们还进行了动力学研究,表明低硫胺鱼浓度对P / CAF-HAT活性的激活作用基于其作为P / CAF的基材的参与,以产生能够依次增加酶活性的N-8-乙酰吡啶物最多四倍。

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