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Transcriptional Mechanisms of Drug Addiction

机译:药物成瘾的转录机制

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Regulation of gene expression is considered a plausible mechanism of drug addiction given the stability of behavioral abnormalities that define an addicted state. Numerous transcription factors, proteins that bind to regulatory regions of specific genes and thereby control levels of their expression, have been implicated in the addiction process over the past decade or two. Here we review the growing evidence for the role played by several prominent transcription factors, including a Fos family protein (ΔFosB), cAMP response element binding protein (CREB), and nuclear factor kappa B (NFκB), among several others, in drug addiction. As will be seen, each factor displays very different regulation by drugs of abuse within the brain's reward circuitry, and in turn mediates distinct aspects of the addiction phenotype. Current efforts are geared toward understanding the range of target genes through which these transcription factors produce their functional effects and the underlying molecular mechanisms involved. This work promises to reveal fundamentally new insight into the molecular basis of addiction, which will contribute to improved diagnostic tests and therapeutics for addictive disorders.
机译:考虑到定义成瘾状态的行为异常的稳定性,基因表达的调节被认为是药物成瘾的合理机制。在过去的一两个十年中,成瘾过程涉及许多转录因子,即与特定基因的调节区结合并由此控制其表达水平的蛋白质。在这里,我们回顾了越来越多的证据表明,在一些成瘾中,包括Fos家族蛋白(ΔFosB),cAMP反应元件结合蛋白(CREB)和核因子kappa B(NFκB)在内的几种重要转录因子在药物成瘾中的作用。可以看出,每种因素在大脑的奖励回路中显示出受滥用药物的不同调节,进而介导成瘾表型的不同方面。当前的工作旨在了解靶基因的范围,这些转录因子可通过这些靶基因发挥作用并涉及潜在的分子机制。这项工作有望从根本上揭示成瘾分子基础的新见解,这将有助于改善成瘾性疾病的诊断测试和治疗方法。

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