Savelieva Katerina V, Zhao Shulei, Pogorelov Vladimir M, Rajan Indrani, Yang Qi, Cullinan Emily, Lanthorn Thomas H
Lexicon Pharmaceuticals Incorporated, The Woodlands, TX, USA.
PLoS One. 2008;3(10):e3301. doi: 10.1371/journal.pone.0003301. Epub 2008 Oct 15.
The neurotransmitter serotonin (5-HT) plays an important role in both the peripheral and central nervous systems. The biosynthesis of serotonin is regulated by two rate-limiting enzymes, tryptophan hydroxylase-1 and -2 (TPH1 and TPH2). We used a gene-targeting approach to generate mice with selective and complete elimination of the two known TPH isoforms. This resulted in dramatically reduced central 5-HT levels in Tph2 knockout (TPH2KO) and Tph1/Tph2 double knockout (DKO) mice; and substantially reduced peripheral 5-HT levels in DKO, but not TPH2KO mice. Therefore, differential expression of the two isoforms of TPH was reflected in corresponding depletion of 5-HT content in the brain and periphery. Surprisingly, despite the prominent and evolutionarily ancient role that 5-HT plays in both vertebrate and invertebrate physiology, none of these mutations resulted in an overt phenotype. TPH2KO and DKO mice were viable and normal in appearance. Behavioral alterations in assays with predictive validity for antidepressants were among the very few phenotypes uncovered. These behavioral changes were subtle in the TPH2KO mice; they were enhanced in the DKO mice. Herein, we confirm findings from prior descriptions of TPH1 knockout mice and present the first reported phenotypic evaluations of Tph2 and Tph1/Tph2 knockout mice. The behavioral effects observed in the TPH2 KO and DKO mice strongly confirm the role of 5-HT and its synthetic enzymes in the etiology and treatment of affective disorders.
神经递质5-羟色胺(5-HT)在周围神经系统和中枢神经系统中均发挥着重要作用。5-羟色胺的生物合成受两种限速酶,即色氨酸羟化酶-1和-2(TPH1和TPH2)的调节。我们采用基因靶向方法生成了选择性且完全消除两种已知TPH同工型的小鼠。这导致Tph2基因敲除(TPH2KO)小鼠和Tph1/Tph2双基因敲除(DKO)小鼠的中枢5-HT水平显著降低;而DKO小鼠的外周5-HT水平大幅降低,但TPH2KO小鼠未出现此现象。因此,TPH两种同工型的差异表达反映在脑和外周5-HT含量的相应减少上。令人惊讶的是,尽管5-HT在脊椎动物和无脊椎动物生理学中具有重要且古老的进化作用,但这些突变均未导致明显的表型。TPH2KO和DKO小鼠存活且外观正常。在对抑郁症具有预测效度的检测中出现的行为改变是所发现的极少数表型之一。这些行为变化在TPH2KO小鼠中较为细微;而在DKO小鼠中则有所增强。在此,我们证实了先前对TPH1基因敲除小鼠描述中的发现,并首次报告了Tph2和Tph1/Tph2基因敲除小鼠的表型评估结果。在TPH2 KO和DKO小鼠中观察到的行为效应有力地证实了5-HT及其合成酶在情感障碍的病因学和治疗中的作用。