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成年期缺乏血清素时,大脑特异性条件性和时间特异性诱导型 Tph2 敲除小鼠的血清素能基因表达正常。

Brain-specific conditional and time-specific inducible Tph2 knockout mice possess normal serotonergic gene expression in the absence of serotonin during adult life.

机构信息

Molecular Psychiatry, Department of Psychiatry, Psychosomatics and Psychotherapy, Julius-Maximilians University of Würzburg, Würzburg, Germany.

出版信息

Neurochem Int. 2010 Nov;57(5):512-7. doi: 10.1016/j.neuint.2010.06.015. Epub 2010 Jul 3.

Abstract

Several lines of evidence implicate a dysregulation of tryptophan hydroxylase (TPH)-dependent serotonin (5-HT) synthesis in emotional behaviour and stress, and point to its relevance for the etiology and pathogenesis of various neuropsychiatric disorders. We therefore studied different animal models featuring reduced Tph2 expression to investigate the consequences of impaired brain 5-HT synthesis on neuronal development. Specifically, brain-specific conditional and time-specific inducible Tph2 knockout (KO) models were generated and investigated for altered serotonergic neuron-specific gene expression. Raphe neurons of a brain-specific constitutive Tph2 KO were completely devoid of Tph2-positive neurons and, consequently, 5-HT in the brain, and also displayed no compensatory up-regulation of Tph1 expression. In contrast, an inducible Tph2 KO mouse facilitates the generation of a brain-specific 5-HT-reduction model selectively during adult life. This resulted in a highly reduced number of Tph2-positive cells and thus 5-HT in the brain. Intriguingly, expression studies detected no alteration in the expression of genes relevant to the 5-HT system in the brain-specific Tph2 KO and the 5-HT-reduction models. These findings confirm the specificity of Tph2 in brain 5-HT synthesis across the lifespan, yet also suggest that neither developmental nor adult 5-HT synthesis is required for the expression of genes specific for serotonergic signalling. The formation of the serotonergic system thus seems to be a preserved expressional pattern due to intrinsic cellular programs which occurs also in the absence of its key molecule, namely 5-HT.

摘要

有几条证据表明,色氨酸羟化酶(TPH)依赖性 5-羟色胺(5-HT)合成的失调与情绪行为和应激有关,并指出其与各种神经精神疾病的病因和发病机制有关。因此,我们研究了几种 Tph2 表达降低的动物模型,以研究脑 5-HT 合成受损对神经元发育的影响。具体来说,生成了大脑特异性条件性和时间特异性诱导性 Tph2 敲除(KO)模型,并研究了其对 5-羟色胺能神经元特异性基因表达的改变。大脑特异性组成型 Tph2 KO 的中缝核神经元完全缺乏 Tph2 阳性神经元,因此脑内也没有 5-HT,而且 Tph1 表达也没有代偿性上调。相比之下,诱导性 Tph2 KO 小鼠有利于在成年期选择性地生成脑特异性 5-HT 减少模型。这导致 Tph2 阳性细胞数量及其脑内 5-HT 高度减少。有趣的是,表达研究未检测到大脑特异性 Tph2 KO 和 5-HT 减少模型中与 5-HT 系统相关的基因表达发生改变。这些发现证实了 Tph2 在整个生命周期中对脑 5-HT 合成的特异性,但也表明无论是发育还是成年期的 5-HT 合成都不是 5-羟色胺能信号特异性基因表达所必需的。因此,由于内在的细胞程序,5-HT 能系统的形成似乎是一种保存的表达模式,即使在缺乏其关键分子 5-HT 的情况下也是如此。

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