首页> 美国卫生研究院文献>The Journal of Neuroscience >Excessive Activation of Serotonin (5-HT) 1B Receptors Disrupts the Formation of Sensory Maps in Monoamine Oxidase A and 5-HT Transporter Knock-Out Mice
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Excessive Activation of Serotonin (5-HT) 1B Receptors Disrupts the Formation of Sensory Maps in Monoamine Oxidase A and 5-HT Transporter Knock-Out Mice

机译:血清素(5-HT)1B受体的过度激活破坏了单胺氧化酶A和5-HT转运蛋白敲除小鼠的感觉图谱的形成。

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摘要

Deficiency in the monoamine degradation enzyme monoamine oxidase A (MAOA) or prenatal exposure to the monoamine uptake inhibitor cocaine alters behavior in humans and rodents, but the mechanisms are unclear. In MAOA knock-out mice, inhibiting serotonin synthesis during development can prevent abnormal segregation of axons in the retinogeniculate and somatosensory thalamocortical systems. To investigate this effect, we crossed MAOA knock-outs with mice lacking the serotonin transporter 5-HTT or the 5-HT1B receptor, two molecules present in developing sensory projections. Segregation was abnormal in 5-HTT knock-outs and MAOA/5-HTT double knock-outs but was normalized in MAOA/5-HT1B double knock-outs and MAOA/5-HTT/5-HT1B triple knock-outs. This demonstrates that the 5-HT1B receptor is a key factor in abnormal segregation of sensory projections and suggests that serotonergic drugs represent a risk for the development of these projections. We also found that the 5-HT1B receptor has an adverse developmental impact on beam-walking behavior in MAOA knock-outs. Finally, because the 5-HT1B receptor inhibits glutamate release, our results suggest that visual and somatosensory projections must release glutamate for proper segregation.
机译:单胺降解酶单胺氧化酶A(MAOA)缺乏或产前暴露于单胺摄取抑制剂可卡因会改变人类和啮齿动物的行为,但机制尚不清楚。在MAOA基因敲除小鼠中,在发育过程中抑制5-羟色胺合成可以防止视黄醛合成和体感性丘脑皮层系统中轴突的异常分离。为了研究这种效果,我们将缺少血清素转运蛋白5-HTT或5-HT1B受体的小鼠与MAOA敲除,这两个分子存在于感觉投射中。在5-HTT基因敲除和MAOA / 5-HTT双基因敲除中分离是异常的,但在MAOA / 5-HT1B双重基因敲除和MAOA / 5-HTT / 5-HT1B三重基因敲除中则正常。这证明5-HT1B受体是感觉投射异常分离的关键因素,并表明血清素能药物代表了这些投射发展的风险。我们还发现5-HT1B受体对MAOA基因敲除中的束走行为具有不利的发展影响。最后,由于5-HT1B受体抑制了谷氨酸的释放,因此我们的结果表明,视觉和体感投射必须释放谷氨酸以实现正确的隔离。

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