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首页> 外文期刊>Brain research bulletin >The neuregulin signaling pathway and schizophrenia: from genes to synapses and neural circuits.
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The neuregulin signaling pathway and schizophrenia: from genes to synapses and neural circuits.

机译:神经调节蛋白信号传导途径和精神分裂症:从基因到突触和神经回路。

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摘要

Numerous genetic linkage and association studies implicate members of the Neuregulin-ErbB receptor (NRG-ErbB) signaling pathway as schizophrenia "at risk" genes. An emphasis of this review is to propose plausible neurobiological mechanisms, regulated by the Neuregulin-ErbB signaling network, that may be altered in schizophrenia and contribute to its etiology. To this end, the distinct neurotransmitter pathways, neuronal subtypes and neural network systems altered in schizophrenia are initially discussed. Next, the review focuses on the possible significance of genetic studies associating NRG1 and ErbB4 with schizophrenia, in light of the functional role of this signaling pathway in regulating glutamatergic, GABAergic and dopaminergic neurotransmission, as well as modulating synaptic plasticity and gamma oscillations. The importance of restricted ErbB4 receptor expression in GABAergic interneurons is emphasized, particularly their expression at glutamatergic synapses of parvalbumin-positive fast-spiking interneurons where modulation of inhibitory drive could account for the dramatic effects of NRG-ErbB signaling on gamma oscillations and pyramidal neuron output. A case is made for reasons that the NRG-ErbB signaling pathway constitutes a "biologically plausible" system for understanding the pathogenic mechanisms that may underlie the complex array of positive, negative and cognitive deficits associated with schizophrenia during development.
机译:大量的遗传连锁和关联研究暗示神经调节蛋白-ErbB受体(NRG-ErbB)信号通路的成员是精神分裂症的“高危”基因。该综述的重点是提出受神经调节蛋白-ErbB信号网络调节的合理的神经生物学机制,该机制可能在精神分裂症中发生改变并有助于其病因。为此,最初讨论了精神分裂症中改变的独特的神经递质途径,神经元亚型和神经网络系统。接下来,鉴于此信号通路在调节谷氨酸能,GABA能和多巴胺能神经传递以及调节突触可塑性和伽马振动中的功能性作用,本综述着重探讨了将NRG1和ErbB4与精神分裂症相关联的遗传研究的可能意义。强调了限制ErbB4受体在GABA能性中枢神经元中表达的重要性,尤其是它们在小白蛋白阳性快突性中枢神经元的谷氨酸能突触中的表达,其中抑制性驱动的调节可以解释NRG-ErbB信号对γ振荡和锥体神经元输出的显著作用。由于NRG-ErbB信号传导途径构成一个“生物学上合理的”系统,用于理解可能是发展过程中与精神分裂症相关的正,负和认知缺陷的复杂机制的基础的原因,因此提出了一个案例。

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