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首页> 外文期刊>Alcohol >Ethanol-induced modulation of GPR55 expression in human monocyte-derived dendritic cells is accompanied by H4K12 acetylation
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Ethanol-induced modulation of GPR55 expression in human monocyte-derived dendritic cells is accompanied by H4K12 acetylation

机译:乙醇诱导的人单核细胞衍生的树突细胞中GPR55表达的调节伴有H4K12乙酰化

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摘要

Inflammation supports the progression of alcohol-related organ injury. Recent research findings have linked ethanol exposure to changes in histone acetylation and deacetylation in the brain and in peripheral tissues, leading to ethanol-dependence related damage. One of the mechanisms that has been shown to play a major role during inflammation is the cannabinoid system. Previous research has demonstrated that ethanol can modulate cannabinoid receptors' functions. Our lab has shown that the G protein-coupled receptor (GPR55), a novel cannabinoid receptor, is upregulated in binge drinkers and in cells treated acutely with ethanol. Additionally, our group has also uncovered that chronic ethanol exposure leads to an increase in histone modifications, such as acetylation. However, the regulatory mechanism of GPR55 within the immune system under the influence of ethanol is poorly understood. Since changes in histone modifications might lead to changes in gene expression, we hypothesize that the mechanism of ethanol-induced upregulation of GPR55 is linked to epigenetic changes on histone proteins. Taking into account previous findings from our lab, the goal of the present study was to determine whether there is any relevant association between histone hyperacetylation and the regulation of the novel cannabinoid receptor GPR55 in monocyte-derived dendritic cells (MDDCs) of human origin treated acutely with ethanol. Therefore, monocytes were isolated from buffy coats and allowed to differentiate into MDDCs. The cells were treated with ethanol for 24?h, harvested, fixed, and stained with antibodies against GPR55. As expected, based on previous findings, confocal microscopy showed that ethanol exposure increases GPR55 expression. In order to demonstrate the correlation between histone acetylation and GPR55 expression regulation, the cells were treated with ethanol, harvested, and then the chromatin was extracted and fractionated for chromatin immunoprecipitation (ChIP) assay, followed by real-time qPCR for the analysis of DNA fragments. The results showed an enrichment of the histone modification H4K12ac in the GPR55 gene of MDDCs treated with ethanol. Furthermore, siRNA against the histone acetyltransferase Tip60 (responsible for the acetylation of H4K12) resulted in a downregulation of GPR55. In conjunction, these results indicate that in the presence of ethanol, the upregulation of GPR55 expression is accompanied by H4K12 acetylation, which might have a significant effect in the ability of this innate immune system's cells to cope with cellular stress induced by ethanol. However, the causality of ethanol regulation of H4K12ac in GPR55 expression changes still lacks further elucidation; therefore, additional experimental approaches to confirm a significant causality between H4K12 acetylation and ethanol regulation of GPR55 are currently undergoing in our lab.
机译:炎症支持醇类相关器官损伤的进展。最近的研究发现将乙醇暴露在大脑和外周组织中的组蛋白乙酰化和脱乙酰化的变化,导致乙醇依赖性相关的损伤。已显示在炎症期间发挥重要作用的机制之一是大麻系统。以前的研究表明,乙醇可以调节大麻素受体的功能。我们的实验室表明,G蛋白偶联受体(GPR55)是一种新型大麻素受体,在泪液饮用者和乙醇处理的细胞中上调。此外,我们的小组还发现,慢性乙醇暴露导致组蛋白修饰的增加,例如乙酰化。然而,在乙醇的影响下,免疫系统内GPR55的调节机制尚不清楚。由于组蛋白修饰的变化可能导致基因表达的变化,因此我们假设乙醇诱导的GPR55的上调机制与组蛋白蛋白的表观遗传变化有关。考虑到我们实验室的先前调查结果,本研究的目标是确定组蛋白的过缩酰基化与人类来源的单核细胞衍生的树突状细胞(MDDC)中的新型大麻素受体GPR55之间是否存在任何相关关联。用乙醇。因此,单核细胞与巴氏涂层分离,并允许区分MDDC。用乙醇处理细胞24μl,收获,固定,并用针对GPR55的抗体染色。正如预期的那样,基于先前的发现,共聚焦显微镜表明,乙醇暴露增加了GPR55表达。为了证明组蛋白乙酰化和GPR55表达调节之间的相关性,用乙醇处理细胞,收获,然后提取染色质并分馏用于染色质免疫沉淀(芯片)测定,然后进行实时QPCR以分析DNA碎片。结果表明,用乙醇处理的MDDCS的GPR55基因中的组蛋白改性H4K12Ac的富集。此外,对组蛋白乙酰转移酶Tip60的siRNA(负责H4K12的乙酰化)导致GPR55的下调。结合,这些结果表明,在存在乙醇的情况下,GPR55表达的上调伴随着H4K12乙酰化,这可能对该先天免疫系统的细胞应对乙醇诱导的细胞应激的能力具有显着影响。然而,在GPR55表达变化中,H4K12Ac的乙醇调节的因果关系仍然缺乏进一步阐明;因此,在我们的实验室目前正在进行额外的实验方法以确认H4K12乙酰化和GPR55的乙醇调节的显着因果关系。

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