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脑源性神经营养因子(BDNF)在体内可增加发育中视顶盖神经元树突中的突触密度。

BDNF increases synapse density in dendrites of developing tectal neurons in vivo.

作者信息

Sanchez Analiza L, Matthews Benjamin J, Meynard Margarita M, Hu Bing, Javed Sana, Cohen Cory Susana

机构信息

Department of Neurobiology and Behavior, University of California, Irvine, Irvine, CA 92697, USA.

出版信息

Development. 2006 Jul;133(13):2477-86. doi: 10.1242/dev.02409. Epub 2006 May 25.

Abstract

Neuronal connections are established through a series of developmental events that involve close communication between pre- and postsynaptic neurons. In the visual system, BDNF modulates the development of neuronal connectivity by influencing presynaptic retinal ganglion cell (RGC) axons. Increasing BDNF levels in the optic tectum of Xenopus tadpoles significantly increases both axon arborization and synapse density per axon terminal within a few hours of treatment. Here, we have further explored the mechanisms by which BDNF shapes synaptic connectivity by imaging tectal neurons, the postsynaptic partners of RGCs. Individual neurons were co-labeled with DsRed2 and a GFP-tagged postsynaptic density protein (PSD95-GFP) to visualize dendritic morphology and postsynaptic specializations simultaneously in vivo. Immunoelectron microscopy confirmed that PSD95-GFP predominantly localized to ultrastructurally identified synapses. Time-lapse confocal microscopy of individual, double-labeled neurons revealed a coincident, activity-dependent mechanism of synaptogenesis and axon and dendritic arbor growth, which is differentially modulated by BDNF. Microinjection of BDNF into the optic tectum significantly increased synapse number in tectal neuron dendritic arbors within 24 hours, without significantly influencing arbor morphology. BDNF function-blocking antibodies had opposite effects. The BDNF-elicited increase in synapse number complements the previously observed increase in presynaptic sites on RGC axons. These results, together with the timescale of the response by tectal neurons, suggest that the effects of BDNF on dendritic synaptic connectivity are secondary to its effects on presynaptic RGCs. Thus, BDNF influences synaptic connectivity in multiple ways: it enhances axon arbor complexity expanding the synaptic territory of the axon, while simultaneously coordinating synapse formation and stabilization with individual postsynaptic cells.

摘要

神经元连接是通过一系列发育事件建立的,这些事件涉及突触前和突触后神经元之间的密切交流。在视觉系统中,脑源性神经营养因子(BDNF)通过影响突触前视网膜神经节细胞(RGC)轴突来调节神经元连接的发育。在非洲爪蟾蝌蚪的视顶盖中增加BDNF水平,在处理后的几小时内,显著增加了轴突分支和每个轴突终末的突触密度。在这里,我们通过对视顶盖神经元(RGC的突触后伙伴)进行成像,进一步探索了BDNF塑造突触连接的机制。单个神经元用DsRed2和绿色荧光蛋白标记的突触后致密蛋白(PSD95-GFP)共同标记,以在体内同时可视化树突形态和突触后特化。免疫电子显微镜证实,PSD95-GFP主要定位于超微结构鉴定的突触。对单个双标记神经元进行延时共聚焦显微镜观察,揭示了一种同时发生的、依赖活动的突触形成以及轴突和树突分支生长的机制,该机制受到BDNF的不同调节。将BDNF显微注射到视顶盖中,在24小时内显著增加了视顶盖神经元树突分支中的突触数量,而对分支形态没有显著影响。BDNF功能阻断抗体则产生相反的效果。BDNF引起的突触数量增加补充了先前观察到的RGC轴突上突触前位点的增加。这些结果,连同视顶盖神经元的反应时间尺度,表明BDNF对树突突触连接的影响是其对突触前RGC影响的继发效应。因此,BDNF以多种方式影响突触连接:它增强轴突分支复杂性,扩大轴突的突触区域,同时与单个突触后细胞协调突触形成和稳定。

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