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Metabolic Regulation of Gene Expression by Histone Lysine beta-Hydroxybutyrylation

机译:组蛋白赖氨酸β-羟基丁酰化对基因表达的代谢调控

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摘要

Here we report the identification and verification of a beta-hydroxybutyrate-derived protein modification, lysine beta-hydroxybutyrylation (Kbhb), as a new type of histone mark. Histone Kbhb marks are dramatically induced in response to elevated beta-hydroxybutyrate levels in cultured cells and in livers from mice subjected to prolonged fasting or streptozotocin-induced diabetic ketoacidosis. In total, we identified 44 histone Kbhb sites, a figure comparable to the known number of histone acetylation sites. By ChIP-seq and RNA-seq analysis, we demonstrate that histone Kbhb is a mark enriched in active gene promoters and that the increased H3K9bhb levels that occur during starvation are associated with genes upregulated in starvation-responsive metabolic pathways. Histone beta-hydroxybutyrylation thus represents a new epigenetic regulatory mark that couples metabolism to gene expression, offering a new avenue to study chromatin regulation and diverse functions of beta-hydroxybutyrate in the context of important human pathophysiological states, including diabetes, epilepsy, and neoplasia.
机译:在这里我们报告鉴定和验证的一种新型的组蛋白标记的β-羟基丁酸酯衍生的蛋白质修饰,赖氨酸β-羟基丁酰化(Kbhb)。在长期禁食或链脲佐菌素诱导的糖尿病性酮症酸中毒的小鼠中,对培养的细胞和肝脏中的β-羟基丁酸水平升高,可显着诱导组蛋白Kbhb标记。总共,我们确定了44个组蛋白Kbhb位点,这一数字与已知数量的组蛋白乙酰化位点相当。通过ChIP-seq和RNA-seq分析,我们证明组蛋白Kbhb是一个富含活性基因启动子的标记,并且在饥饿期间发生的H3K9bhb水平升高与在饥饿响应性代谢途径中上调的基因有关。因此,组蛋白β-羟基丁酸酯化代表了一个新的表观遗传调控标记,该标记将新陈代谢与基因表达耦合在一起,为研究染色质调控和β-羟基丁酸酯在人类重要的病理生理状态(包括糖尿病,癫痫和赘生物)中的多种功能提供了新途径。

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