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Optimizing Cholinergic Tone Through Lynx Modulators of Nicotinic Receptors: Implications for Plasticity and Nicotine Addiction

机译:通过烟碱受体的天猫调节剂优化胆碱能的音调:对可塑性和尼古丁成瘾的影响。

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The cholinergic system underlies both adaptive (learning and memory) and nonadaptive (addiction and dependency) behavioral changes through its ability to shape and regulate plasticity. Protein modulators such as lynx family members can fine tune the activity of the cholinergic system and contribute to the graded response of the cholinergic system, stabilizing neural circuitry through direct interaction with nicotinic receptors. Release of this molecular brake can unmask cholinergic-dependent mechanisms in the brain. Lynx proteins have the potential to provide top-down control over plasticity mechanisms, including addictive propensity. If this is indeed the case, then, what regulates the regulator? Transcriptional changes of lynx genes in response topharmacological, physiological, and pathological alterations are explored in this review.
机译:胆碱能系统通过塑造和调节可塑性的能力,既是适应性(学习和记忆)行为,又是非适应性(成瘾和依赖性)行为改变的基础。诸如天猫座家族成员之类的蛋白质调节剂可以微调胆碱能系统的活性,并有助于胆碱能系统的分级反应,通过与烟碱样受体的直接相互作用来稳定神经回路。释放这种分子制动可以揭露大脑中胆碱能依赖性机制。 x蛋白有潜力提供自上而下的可塑性机制控制,包括成瘾倾向。如果确实如此,那么如何监管监管机构?本综述探讨了天猫基因响应药理,生理和病理变化的转录变化。

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