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脑源性神经营养因子亚型:神经发生与血清素之间的往返车票?

BDNF isoforms: a round trip ticket between neurogenesis and serotonin?

作者信息

Foltran Rocío Beatriz, Diaz Silvina Laura

机构信息

Instituto de Biología Celular y Neurociencias Prof. E. De Robertis, CONICET-UBA, Fac. de Medicina - UBA, Buenos Aires, Argentina.

出版信息

J Neurochem. 2016 Jul;138(2):204-21. doi: 10.1111/jnc.13658. Epub 2016 May 31.

Abstract

The brain-derived neurotrophic factor, BDNF, was discovered more than 30 years ago and, like other members of the neurotrophin family, this neuropeptide is synthetized as a proneurotrophin, the pro-BDNF, which is further cleaved to yield mature BDNF. The myriad of actions of these two BDNF isoforms in the central nervous system is constantly increasing and requires the development of sophisticated tools and animal models to refine our understanding. This review is focused on BDNF isoforms, their participation in the process of neurogenesis taking place in the hippocampus of adult mammals, and the modulation of their expression by serotonergic agents. Interestingly, around this triumvirate of BDNF, serotonin, and neurogenesis, a series of recent research has emerged with apparently counterintuitive results. This calls for an exhaustive analysis of the data published so far and encourages thorough work in the quest for new hypotheses in the field. BDNF is synthetized as a pre-proneurotrophin. After removal of the pre-region, proBDNF can be cleaved by intracellular or extracellular proteases. Mature BDNF can bind TrkB receptors, promoting their homodimerization and intracellular phosphorylation. Phosphorylated-TrkB can activate three different signaling pathways. Whereas G-protein-coupled receptors can transactivate TrkB receptors, truncated forms can inhibit mBDNF signaling. Pro-BDNF binds p75(NTR) by its mature domain, whereas the pro-region binds co-receptors.

摘要

脑源性神经营养因子(BDNF)于30多年前被发现,与神经营养因子家族的其他成员一样,这种神经肽最初是以一种前体神经营养因子(pro-BDNF)的形式合成的,随后进一步裂解产生成熟的BDNF。这两种BDNF异构体在中枢神经系统中的众多作用不断增加,需要开发精密的工具和动物模型来深化我们的理解。本综述聚焦于BDNF异构体、它们在成年哺乳动物海马体神经发生过程中的参与情况,以及血清素能药物对其表达的调节。有趣的是,围绕着BDNF、血清素和神经发生这三者,最近出现了一系列结果明显有悖常理的研究。这就需要对迄今已发表的数据进行详尽分析,并鼓励在该领域寻求新假说的过程中开展深入研究。BDNF最初以前体前体神经营养因子的形式合成。去除前体区域后,proBDNF可被细胞内或细胞外蛋白酶裂解。成熟的BDNF可与TrkB受体结合,促进其同源二聚化和细胞内磷酸化。磷酸化的TrkB可激活三种不同的信号通路。虽然G蛋白偶联受体可反式激活TrkB受体,但截短形式可抑制mBDNF信号传导。Pro-BDNF通过其成熟结构域与p75(NTR)结合,而前体区域则与共受体结合。

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