Sallinen Ville, Sundvik Maria, Reenilä Ilkka, Peitsaro Nina, Khrustalyov Denis, Anichtchik Oleg, Toleikyte Gabija, Kaslin Jan, Panula Pertti
Neuroscience center, Institute of Biomedicine/Anatomy, University of Helsinki, Finland.
J Neurochem. 2009 Apr;109(2):403-15. doi: 10.1111/j.1471-4159.2009.05986.x. Epub 2009 Feb 13.
Serotonin (or 5-hydroxytryptamine; 5-HT) and monoamine oxidase (MAO) are involved in several physiological functions and pathological conditions. We show that the serotonergic system and its development in zebrafish are similar to those of other vertebrates rendering zebrafish a good model to study them. Development of MAO expression followed a similar time course as the 5-HT system. MAO expression and activity were located in or adjacent to serotonergic nuclei and their targets, especially in the ventral hypothalamus. MAO mRNA was detected in the brain from 24 h post-fertilization and histochemical enzyme activity from 42 h post-fertilization. Deprenyl (100 microM) decreased MAO activity 34-74% depending on the age. Inhibition of MAO by deprenyl strongly increased 5-HT but not dopamine and noradrenaline levels. Deprenyl decreased 5-HT-immunoreactivity in serotonergic neurons and induced novel ectopic 5-HT-immunoreactivity neurons in the diencephalon in a manner dependent on 5-HT uptake. Deprenyl administration decreased locomotion, altered vertical positioning and increased heart rate. Treatment with p-chlorophenylalanine normalized 5-HT levels and rescued the behavioral alteration, indicating that the symptoms were 5-HT dependent. These findings suggest that zebrafish MAO resembles mammalian MAO A more than MAO B, metabolizing mainly 5-HT. Applications of this model of hyperserotonergism include pharmacological and genetic screenings.
血清素(或5-羟色胺;5-HT)和单胺氧化酶(MAO)参与多种生理功能和病理状况。我们发现斑马鱼的血清素能系统及其发育与其他脊椎动物相似,这使得斑马鱼成为研究它们的良好模型。MAO表达的发育过程与5-HT系统相似。MAO的表达和活性位于血清素能核及其靶点内或附近,尤其是在下丘脑腹侧。受精后24小时在脑中检测到MAO mRNA,受精后42小时检测到组织化学酶活性。司来吉兰(100微摩尔)根据年龄降低MAO活性34%-74%。司来吉兰对MAO的抑制作用强烈增加了5-HT水平,但对多巴胺和去甲肾上腺素水平没有影响。司来吉兰降低了血清素能神经元中的5-HT免疫反应性,并以依赖于5-HT摄取的方式在间脑中诱导出新的异位5-HT免疫反应性神经元。给予司来吉兰会降低运动能力,改变垂直位置并增加心率。用对氯苯丙氨酸治疗可使5-HT水平正常化并挽救行为改变,表明这些症状依赖于5-HT。这些发现表明斑马鱼MAO更类似于哺乳动物的MAO A而非MAO B,主要代谢5-HT。这种高血清素能模型的应用包括药理学和基因筛选。