首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Differential Hippocampal Expression of BDNF Isoforms and Their Receptors Under Diverse Configurations of the Serotonergic System in a Mice Model of Increased Neuronal Survival
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Differential Hippocampal Expression of BDNF Isoforms and Their Receptors Under Diverse Configurations of the Serotonergic System in a Mice Model of Increased Neuronal Survival

机译:在神经元存活增加的小鼠模型中,血清素能系统的多种构型下BDNF亚型及其受体的海马差异表达。

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摘要

Neurotrophic factors are relevant regulators of the neurogenic process at different levels. In particular, the brain-derived neurotrophic factor, BDNF, is highly expressed in the hippocampus (HC) of rodents and participates in the control of neuronal proliferation, and survival in the dentate gyrus (DG). Likewise, serotonin is also involved in the regulation of neurogenesis, though its role is apparently more complex. Indeed, both enhancement of serotonin neurotransmission as well as serotonin depletion, paradoxically increase neuronal survival in the HC of mice. In this study, we analyzed the protein expression of the BDNF isoforms, i.e., pro- and mature-BDNF, and their respective receptors p75 and TrkB, in the HC of mice chronically treated with para-chloro-phenyl-alanine (PCPA), an inhibitor of serotonin synthesis. The same analysis was conducted in hyposerotonergic mice with concomitant administration of the 5-HT1A receptor agonist, 8-Hydroxy-2-(di-n- propylamino) tetralin (8-OH-DPAT). Increased expression of p75 receptor with decreased expression of pro-BDNF was observed after chronic PCPA. Seven-day treatment with 8-OH-DPAT reestablished the expression of pro-BDNF modified by PCPA, and induced an increase in the expression of p75 receptor. It has been demonstrated that PCPA-treated mice have higher number of immature neurons in the HC. Given that immature neurons participate in the pattern separation process, the object pattern separation test was conducted. A better performance of hyposerotonergic mice was not confirmed in this assay. Altogether, our results show that molecules in the BDNF signaling pathway are differentially expressed under diverse configurations of the serotonergic system, allowing for fine-tuning of the neurogenic process.
机译:神经营养因子在不同水平上是神经发生过程的相关调节剂。特别地,脑源性神经营养因子BDNF在啮齿动物的海马(HC)中高度表达,并参与神经元增殖的控制和齿状回(DG)的存活。同样,5-羟色胺也参与神经发生的调节,尽管其作用显然更为复杂。实际上,5-羟色胺神经传递的增强以及5-羟色胺的耗竭都自相矛盾地增加了小鼠HC中神经元的存活。在这项研究中,我们分析了对氯苯丙氨酸(PCPA)慢性治疗的小鼠HC中BDNF亚型的蛋白表达,即前和成熟BDNF以及它们各自的受体p75和TrkB,血清素合成抑制剂。在同时给予5-HT1A受体激动剂8-羟基-2-(二-正丙基氨基)四氢化萘(8-OH-DPAT)的低血清素能小鼠中进行了相同的分析。慢性PCPA后观察到p75受体表达增加而pro-BDNF表达减少。用8-OH-DPAT处理7天,可以重新建立PCPA修饰的pro-BDNF的表达,并诱导p75受体表达的增加。已经证明,用PCPA处理的小鼠的HC中有更多的未成熟神经元。鉴于未成熟的神经元参与了模式分离过程,因此进行了对象模式分离测试。在该测定法中未证实低血清素能小鼠的更好性能。总而言之,我们的结果表明,BDNF信号通路中的分子在血清素能系统的各种构型下差异表达,从而可以对神经发生过程进行微调。

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