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GAP-43 Is Critical for Normal Development of the Serotonergic Innervation in Forebrain

机译:GAP-43对于前脑血清素能神经的正常发育至关重要

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摘要

Serotonergic (5-HT) axons from the raphe nuclei are among the earliest afferents to innervate the developing forebrain. The present study examined whether GAP-43, a growth-associated protein expressed on growing 5-HT axons, is necessary for normal 5-HT axonal outgrowth and terminal arborization during the perinatal period. We found a nearly complete failure of 5-HT immunoreactive axons to innervate the cortex and hippocampus in GAP-43–null (GAP43−/−) mice. Abnormal ingrowth of 5-HT axons was apparent on postnatal day 0 (P0); quantitative analysis of P7 brains revealed significant reductions in the density of 5-HT axons in the cortex and hippocampus of GAP43−/− mice relative to wild-type (WT) controls. In contrast, 5-HT axon density was normal in the striatum, septum, and amygdala and dramatically higher than normal in the thalamus of GAP43−/− mice. Concentrations of serotonin and its metabolite, 5-hydroxyindolacetic acid, and norepinephrine were decreased markedly in the anterior and posterior cerebrum but increased in the brainstem of GAP43−/− mice. Cell loss could not account for these abnormalities, because unbiased stereological analysis showed no significant difference in the number of 5-HT dorsal raphe neurons in P7 GAP43−/− versus WT mice. The aberrant 5-HT innervation pattern persisted at P21, indicating a long-term alteration of 5-HT projections to forebrain in the absence of GAP-43. In heterozygotes, the density and morphology of 5-HT axons was intermediate between WT and homozygous GAP43−/− mice. These results suggest that GAP-43 is a key regulator in normal pathfinding and arborization of 5-HT axons during early brain development.
机译:来自缝核的血清素能(5-HT)轴突是神经发育中前脑的最早传入神经。本研究检查了GAP-43(一种在生长的5-HT轴突上表达的生长相关蛋白)对于围产期正常的5-HT轴突生长和终末乔化是否必要。我们发现5-HT免疫反应性轴突几乎完全无法支配GAP-43-null(GAP43-/-)小鼠的皮层和海马。出生后第0天(P0)5-HT轴突向内生长异常。对P7脑的定量分析显示,相对于野生型(WT)对照,GAP43-/-小鼠的皮质和海马中5-HT轴突的密度显着降低。相反,5-HT轴突密度在纹状体,隔垫和杏仁核中是正常的,并且明显高于在GAP43-/-小鼠的丘脑中的正常值。在前,后大脑中,血清素及其代谢产物,5-羟吲哚乙酸和去甲肾上腺素的浓度明显降低,而在GAP43-/-小鼠的脑干中升高。细胞丢失不能解释这些异常,因为无偏见的立体分析显示,与WT小鼠相比,P7 GAP43-/-的5-HT背沟神经元数量没有显着差异。异常的5-HT神经支配模式在P21持续存在,表明在没有GAP-43的情况下5-HT预测长期改变为前脑。在杂合子中,5-HT轴突的密度和形态介于WT和纯合GAP43-/-小鼠之间。这些结果表明,GAP-43是早期大脑发育过程中5-HT轴突正常寻路和乔木化的关键调节剂。

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