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首页> 外文期刊>Biological psychiatry >Cocaine-Induced Chromatin Modifications Associate With Increased Expression and Three-Dimensional Looping of Auts2
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Cocaine-Induced Chromatin Modifications Associate With Increased Expression and Three-Dimensional Looping of Auts2

机译:可卡因诱导的染色质修饰与Auts2的表达式和三维循环增加

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摘要

Abstract Background Exposure to drugs of abuse alters the epigenetic landscape of the brain’s reward regions, such as the nucleus accumbens. We investigated how combinations of chromatin modifications affect genes that regulate responses to cocaine. We focused on Auts2 , a gene linked to human evolution and cognitive disorders, which displays strong clustering of cocaine-induced chromatin modifications in this brain region. Methods We combined chromosome conformation capture, circularized chromosome conformation capture, and?related approaches with behavioral paradigms relevant to cocaine phenotypes. Cell type–specific functions were?assessed by fluorescence-activated cell sorting and viral-mediated overexpression in Cre-dependent mouse lines. Results We observed that Auts2 gene expression is increased by repeated cocaine administration specifically in D 2 -type medium spiny neurons in the nucleus accumbens, an effect seen in male but not female mice. Auts2 messenger RNA expression was also upregulated postmortem in the nucleus accumbens of male human cocaine addicts. We obtained evidence that chromosomal looping, bypassing 1524 kb of linear genome, connects Auts2 to the Caln1 gene locus under baseline conditions. This looping was disrupted after repeated cocaine exposure, resulting in increased expression of both genes in D 2 -type medium spiny neurons. Cocaine exposure reduces binding of CCCTC-binding factor, a chromosomal scaffolding protein, and increases histone and DNA methylation at the Auts–Caln1 loop base in the nucleus accumbens. Cell type–specific overexpression of Auts2 or Caln1 in D 2 -type medium spiny neurons demonstrated that both genes promote cocaine reward. Conclusions These findings suggest that cocaine-induced alterations of neuronal three-dimensional genome organization destabilize higher order chromatin at specific loci that regulate responses to the drug.
机译:摘要背景暴露于滥用药物的毒品造成脑奖励区域的表观遗传景观,例如核心腺。我们研究了染色质修饰的组合如何影响调节对可卡因反应的基因。我们专注于AUTS2,一种与人类演化和认知障碍相关的基因,其显示在该脑区中的可卡因诱导的CoCaine诱导的染色质修饰的强聚类。方法多组合染色体构象捕获,圆形化染色体构象捕获,以及与可卡因表型相关的行为范例的相关方法。细胞类型特异性函数是β依赖性小鼠线中的荧光激活细胞分选和病毒介导的过表达评估。结果我们观察到,在细胞核中的D 2型培养基刺神经元中特别是在核心腺中的反复可卡因给药增加了AUT2基因表达,在雄性但不是雌性小鼠中看到的效果。 AUTS2 Messenger RNA表达还在雄性人类可卡因成瘾者的核心宫内上调的后期后期。我们获得了证据,即绕过1524kb的线性基因组,染色体环状,在基线条件下将AutS2连接到Caln1基因座。在重复的可卡因暴露后,这种循环被破坏,导致D 2型培养基中刺神经元的两种基因的表达增加。可卡因暴露减少了CCCTC结合因子,染色体支架蛋白的结合,并在核心尿道中的Auts-Caln1环碱基中增加组蛋白和DNA甲基化。在D 2型培养基中的AutS2或Caln1的细胞类型特异性过表达均证明了两种基因促进可卡因奖励。结论这些研究结果表明,可卡因诱导的神经元三维基因组组织的改变使得在调节对药物反应的特定基因座上破坏了更高阶染色质。

著录项

  • 来源
    《Biological psychiatry》 |2017年第11期|共12页
  • 作者单位

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Departments of Psychiatry and Neuroscience Friedman Brain Institute Icahn School of Medicine at;

    Institute of Biochemistry Stuttgart University;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Departments of Developmental and Regenerative Biology and of Genetics and Genomic Sciences and;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    McGovern Institute for Brain Research Massachusetts Institute of Technology;

    Douglas Mental Health University Institute;

    Departments of Psychiatry and Neuroscience Friedman Brain Institute Icahn School of Medicine at;

    Departments of Developmental and Regenerative Biology and of Genetics and Genomic Sciences and;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

    University of Zurich/Eidgen?ssische Technische Hochschule Zurich Brain Research Institute;

    Institute of Biochemistry Stuttgart University;

    Departments of Psychiatry and Neuroscience Friedman Brain Institute Icahn School of Medicine at;

    Fishberg Department of Neuroscience and Friedman Brain Institute Icahn School of Medicine at Mount;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

    Addiction; Chromatin looping; CTCF; DNA methylation; Histone methylation; Nucleus accumbens;

    机译:成瘾;染色质循环;CTCF;DNA甲基化;组蛋白甲基化;核心腺;

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