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Epigenetic Mechanisms of Positive Affective State of AUD

Epigenetic Mechanisms of Positive Affective State of AUD
AUD积极情感状态的表观遗传机制
批准号:
10613969
负责人:
MARK S BRODIE
金额:
$19.81万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
未结题
起止时间:
2015-04-01 至 2025-03-31
关键词:
ATAC-seqAbstinenceAcetylationAffectiveAlcohol abuseAlcohol consumptionAlcohol withdrawal syndromeAmygdaloid structureAnxietyAreaAutopsyBehavioralBiologicalBrainCRISPR/Cas technologyChIP-seqCholesterolChronicClustered Regularly Interspaced Short Palindromic RepeatsCoupledDNA MethylationDataEP300 geneEZH2 geneElectrophysiology (science)EnzymesEpigenetic ProcessEthanolExhibitsFundingGene ClusterGene ExpressionGene Expression RegulationGenesGeneticGoalsHDAC2 geneHippocampusHistone AcetylationHistone DeacetylaseHistone Deacetylase InhibitorHistone-Lysine N-MethyltransferaseHistonesHumanInterventionLeadLinkMethodsMethylationModificationMolecularMotivationNeuronsNucleus AccumbensPathway AnalysisPathway interactionsPhenotypePhysiologyPlayPrefrontal CortexProteinsPublishingRattusRecording of previous eventsRelapseRewardsRoleSamplingSmall Interfering RNASubstance Withdrawal SyndromeSymptomsSynapsesTechnologyTestingTranslatingVentral Tegmental AreaWithdrawalWorkalcohol cravingalcohol exposurealcohol researchalcohol seeking behavioralcohol use disordercell typechromatin immunoprecipitationclinically relevantdesigner receptors exclusively activated by designer drugsdrinkingdrinking behavioreffective therapyenzyme pathwayepigenetic regulationepigenomeexperimental studygamma-Aminobutyric Acidgene networkgenetic technologygenome sequencinghistone methylationmethyl groupneurosteroidsnovelpharmacologicpre-clinicalpreclinical studypreventproblem drinkerpromotertranscriptometranscriptome sequencingwhole genome

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中文摘要
翻译
项目摘要 作为酒精使用障碍(AUD)的标志,戒断综合征包括两种阴性症状, 焦虑和动机症状,如渴望酒精,这会促进复发和酒精寻求。 了解酒精戒断如何改变大脑生理学是发展神经科学的重要一步。 减少酗酒的有效治疗方法。腹侧被盖区(VTA)是一个重要的脑区, 投射到延伸杏仁核的组成部分,包括脑桥核,前额叶皮层, 杏仁核和海马体。戒断引起的腹侧被盖区神经元的生理变化可能是 在AUD期间寻求酒精。腹侧被盖区神经元对γ-氨基丁酸抑制的敏感性 在酒精戒断过程中,GABA水平降低,但通过组蛋白脱乙酰酶(HDAC)抑制剂恢复正常, 表明腹侧被盖区戒断引起的表观遗传变化可能适合于药理学治疗, 操纵该项目的全基因组测序和分子研究确定了一组基因, 编码胆固醇合成途径酶,其在酒精戒断期间表现出表达降低, 并且在功能上与戒断期间VTA神经元中GABA敏感性降低相关。拟议 项目计划进一步描述特定表观遗传修饰在戒断诱导调节中的作用 负责胆固醇合成的基因,以及这些变化对戒断诱导的GABA的影响。 过敏和饮酒行为。通过使用电生理学,行为学和最先进的分子 通过化学遗传学和CRISPR技术等生物学方法,我们预计将实现以下目标: 1)揭示与慢性酒精暴露相关的新的表观遗传标记和基因表达变化 和全基因组方法的撤回,2)检查是否减少组蛋白乙酰化和 组蛋白甲基化增加减少戒断时腹侧被盖区胆固醇合成酶的表达 以细胞类型特异性的方式,并探讨胆固醇合成酶基因在戒断相关的 饮酒行为和GABA低敏感性,3)以确定是否有针对性的表观遗传干预 通过使用CRISPR来防止组蛋白乙酰化的减少, 关键胆固醇合成酶基因的启动子,以及4)翻译成死后人酒精性VTA 已经在小鼠中鉴定的与GABA敏感性降低相关的基因的表观遗传动力学和表达, 老鼠腹侧被盖区最终,需要这些研究来了解涉及VTA神经元的表观遗传适应 在戒酒期间处于积极的情感状态,并且,与本中心的其他组成部分一起,将 提供了大量关于戒断引起的大脑变化的表观遗传机制的信息, 和可能的药理学方法,以更有效地治疗AUD。
英文摘要
Project Summary As a hallmark of alcohol use disorder (AUD), the withdrawal syndrome includes both negative symptoms like anxiety and motivational symptoms such as craving for alcohol, which promotes relapse and alcohol seeking. Understanding how alcohol withdrawal changes brain physiology is an important step towards developing effective treatments to reduce alcohol abuse. The ventral tegmental area (VTA) is an important brain area that projects to components of the extended amygdala, including the nucleus accumbens, prefrontal cortex, amygdala and hippocampus. Changes in the physiology of VTA neurons induced by withdrawal may underlie the alcohol-seeking during AUD. The sensitivity of neurons of the VTA to inhibition by gamma aminobutyric acid (GABA) is decreased during alcohol withdrawal but normalized by histone deacetylase (HDAC) inhibitors, indicating epigenetic changes induced by withdrawal in the VTA may be amenable to pharmacological manipulation. Whole genome sequencing and molecular studies of this project identified a cluster of genes that encode cholesterol synthesis pathway enzymes that showed decreased expression during alcohol withdrawal, and are functionally relevant to decreased GABA sensitivity in VTA neurons during withdrawal. The proposed project plans to further characterize the role of specific epigenetic modifications in withdrawal-induced regulation of genes responsible for cholesterol synthesis, and the effect of these changes in withdrawal-induced GABA hyposensitivity and drinking behaviors. By using electrophysiological, behavioral, and state of the art molecular biological methods such as chemogenetics and CRISPR technology, we anticipate achieving the following goals: 1) to reveal novel epigenetic marks and changes in gene expression associated with chronic alcohol exposure and withdrawal with whole genome approaches, 2) to examine whether decreased histone acetylation and increased histone methylation reduce expression of cholesterol synthesis enzymes in the VTA during withdrawal in a cell-type specific manner, and probe the role of cholesterol synthesis enzyme genes in withdrawal-related drinking behavior and GABA hyposensitivity, 3) to determine whether targeted epigenetic intervention counteracts withdrawal-induced phenotypes by using CRISPR to prevent decreases in histone acetylation on promoters of key cholesterol synthesis enzyme genes, and 4) to translate to post-mortem human alcoholic VTA the epigenetic dynamics and expression of genes related to GABA hyposensitivity that have been identified in the rat VTA. Ultimately, these studies are needed to understand epigenetic adaptation of VTA neurons involved in the positive affective state during alcohol withdrawal, and, with the other components of this Center, will provide a great deal of information on epigenetic mechanisms involved in withdrawal-induced brain changes, and possible pharmacological approaches toward more effective treatment of AUD.
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Epigenetic Mechanisms of Positive Affective State of AUD
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