Kojima M, Mizui T
Biomedical Research Institute, Advanced Industrial Science and Technology (AIST), Osaka, Japan; Core Research for Evolutional Science and Technology (CREST), Japan Science and Technology Agency (JST), Kawaguchi, Japan.
Biomedical Research Institute, Advanced Industrial Science and Technology (AIST), Osaka, Japan; Core Research for Evolutional Science and Technology (CREST), Japan Science and Technology Agency (JST), Kawaguchi, Japan.
Vitam Horm. 2017;104:19-28. doi: 10.1016/bs.vh.2016.11.006. Epub 2017 Jan 25.
One of the most characterized neurotrophic factors is brain-derived neurotrophic factor (BDNF), which regulates neuronal survival and differentiation, and functions in activity-dependent plasticity processes such as long-term potentiation, long-term depression (LTD), and learning memory. Similar to other growth factors, BDNF protein is produced by transcriptional and translational mechanisms. Nevertheless, a posttranslational mechanism, the proteolytic conversion of precursor BDNF into at least two fragments, bioactive BDNF and the prodomain, has not been well elucidated. Recently, we demonstrated that the BDNF prodomain, which is named the BDNF propeptide, was endogenously secreted from neuronal cells and facilitated a cellular mechanism of LTD, suggesting the manner through which this posttranslational mechanism multiplies the biological actions of BDNF. In this chapter, we focus on the BDNF propeptide, especially in synaptic plasticity, and discuss the role of this molecule in the brain. The findings regarding the BDNF propeptide would provide new insights for understanding the mechanisms of action of the propeptides of growth factors as well as the biological roles of neurotrophins.
研究得最为透彻的神经营养因子之一是脑源性神经营养因子(BDNF),它调节神经元的存活和分化,并在诸如长时程增强、长时程抑制(LTD)和学习记忆等活动依赖性可塑性过程中发挥作用。与其他生长因子类似,BDNF蛋白通过转录和翻译机制产生。然而,一种翻译后机制,即前体BDNF蛋白水解转化为至少两个片段,即生物活性BDNF和前结构域,尚未得到充分阐明。最近,我们证明了BDNF前结构域,即BDNF前肽,是从神经元细胞中内源性分泌的,并促进了LTD的细胞机制,这表明这种翻译后机制增加BDNF生物学作用的方式。在本章中,我们重点关注BDNF前肽,特别是在突触可塑性方面,并讨论该分子在大脑中的作用。关于BDNF前肽的研究结果将为理解生长因子前肽的作用机制以及神经营养因子的生物学作用提供新的见解。