Song M, Martinowich K, Lee F S
Synaptic Circuit Plasticity Laboratory, Department of Structure and Function of Neural Network, Korea Brain Research Institute, Dong-gu, Daegu, Korea.
Lieber Institute for Brain Development, Baltimore, MD, USA.
Mol Psychiatry. 2017 Oct;22(10):1370-1375. doi: 10.1038/mp.2017.144. Epub 2017 Jul 25.
Neurotrophic factors, a family of secreted proteins that support the growth, survival and differentiation of neurons, have been intensively studied for decades due to the powerful and diverse effects on neuronal physiology, as well as their therapeutic potential. Such efforts have led to a detailed understanding on the molecular mechanisms of neurotrophic factor signaling. One member, brain-derived neurotrophic factor (BDNF) has drawn much attention due to its pleiotropic roles in the central nervous system and implications in various brain disorders. In addition, recent advances linking the rapid-acting antidepressant, ketamine, to BDNF translation and BDNF-dependent signaling, has re-emphasized the importance of understanding the precise details of BDNF biology at the synapse. Although substantial knowledge related to the genetic, epigenetic, cell biological and biochemical aspects of BDNF biology has now been established, certain aspects related to the precise localization and release of BDNF at the synapse have remained obscure. A recent series of genetic and cell biological studies have shed light on the question-the site of BDNF release at the synapse. In this Perspectives article, these new insights will be placed in the context of previously unresolved issues related to BDNF biology, as well as how BDNF may function as a downstream mediator of newer pharmacological agents currently under investigation for treating psychiatric disorders.
神经营养因子是一类分泌蛋白,可支持神经元的生长、存活和分化。由于其对神经元生理学具有强大而多样的作用及其治疗潜力,数十年来一直受到深入研究。这些努力使得人们对神经营养因子信号传导的分子机制有了详细的了解。其中一个成员,脑源性神经营养因子(BDNF),因其在中枢神经系统中的多效性作用以及在各种脑部疾病中的影响而备受关注。此外,最近将速效抗抑郁药氯胺酮与BDNF翻译和BDNF依赖性信号传导联系起来的进展,再次强调了了解突触处BDNF生物学精确细节的重要性。尽管现在已经建立了与BDNF生物学的遗传、表观遗传、细胞生物学和生物化学方面相关的大量知识,但与BDNF在突触处的精确定位和释放相关的某些方面仍然不清楚。最近一系列的遗传和细胞生物学研究为这个问题——BDNF在突触处的释放位点——提供了线索。在这篇观点文章中,这些新见解将置于与BDNF生物学相关的先前未解决问题的背景下,以及BDNF如何作为目前正在研究用于治疗精神疾病的新型药物的下游介质发挥作用。