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脑源性神经营养因子与海马突触可塑性

BDNF and Hippocampal Synaptic Plasticity.

作者信息

Leal G, Bramham C R, Duarte C B

机构信息

CNC-Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.

K.G. Jebsen Center for Neuropsychiatric Disorders, University of Bergen, Bergen, Norway.

出版信息

Vitam Horm. 2017;104:153-195. doi: 10.1016/bs.vh.2016.10.004. Epub 2016 Nov 29.

DOI:10.1016/bs.vh.2016.10.004
PMID:28215294
Abstract

Brain-derived neurotrophic factor (BDNF) belongs to a family of small secreted proteins that also include nerve growth factor, neurotrophin 3, and neurotrophin 4. BDNF stands out among all neurotrophins by its high expression levels in the brain and its potent effects at synapses. Several aspects of BDNF biology such as transcription, processing, and secretion are regulated by synaptic activity. Such observations prompted the suggestion that BDNF may regulate activity-dependent forms of synaptic plasticity such as long-term potentiation (LTP), a sustained enhancement of excitatory synaptic efficacy thought to underlie learning and memory. Here, we will review the evidence pointing to a fundamental role of this neurotrophin in LTP, especially within the hippocampus. Prominent questions in the field, including the release and action sites of BDNF during LTP, as well as the signaling and molecular mechanisms involved, will also be addressed. The diverse effects of BDNF at excitatory synapses are determined by the activation of TrkB receptors and downstream signaling pathways, and the functions, typically opposing in nature, of its immature form (proBDNF). The activation of p75 receptors by proBDNF and the implications for long-term depression will also be addressed. Finally, we discuss the synergy between TrkB and glucocorticoid receptor signaling to determine cellular responses to stress.

摘要

脑源性神经营养因子(BDNF)属于一类小分泌蛋白家族,该家族还包括神经生长因子、神经营养素3和神经营养素4。BDNF在所有神经营养因子中脱颖而出,因其在大脑中的高表达水平及其在突触处的强大作用。BDNF生物学的几个方面,如转录、加工和分泌,都受突触活动的调节。这些观察结果促使人们提出,BDNF可能调节依赖活动的突触可塑性形式,如长时程增强(LTP),这是一种兴奋性突触效能的持续增强,被认为是学习和记忆的基础。在这里,我们将综述指向这种神经营养因子在LTP中,尤其是在海马体内的基本作用的证据。该领域的突出问题,包括LTP期间BDNF的释放和作用位点,以及涉及的信号传导和分子机制,也将得到探讨。BDNF在兴奋性突触处的多种作用是由TrkB受体的激活和下游信号通路以及其未成熟形式(proBDNF)的功能(通常在性质上相反)决定的。proBDNF对p75受体的激活及其对长时程抑制的影响也将得到探讨。最后,我们讨论TrkB和糖皮质激素受体信号传导之间的协同作用,以确定细胞对应激的反应。

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