Department of Chemistry and Biotechnology, Tallinn University of Technology, Tallinn, Estonia.
Helsinki Institute of Life Science, University of Helsinki, Helsinki, Finland; Department of Pharmacology, Faculty of Medicine, University of Helsinki, Helsinki, Finland.
J Biol Chem. 2023 Feb;299(2):102897. doi: 10.1016/j.jbc.2023.102897. Epub 2023 Jan 11.
Brain-derived neurotrophic factor (BDNF) promotes neuronal survival and growth during development. In the adult nervous system, BDNF is important for synaptic function in several biological processes such as memory formation and food intake. In addition, BDNF has been implicated in development and maintenance of the cardiovascular system. The Bdnf gene comprises several alternative untranslated 5' exons and two variants of 3' UTRs. The effects of these entire alternative UTRs on translatability have not been established. Using reporter and translating ribosome affinity purification analyses, we show that prevalent Bdnf 5' UTRs, but not 3' UTRs, exert a repressive effect on translation. However, contrary to previous reports, we do not detect a significant effect of neuronal activity on BDNF translation. In vivo analysis via knock-in conditional replacement of Bdnf 3' UTR by bovine growth hormone 3' UTR reveals that Bdnf 3' UTR is required for efficient Bdnf mRNA and BDNF protein production in the brain, but acts in an inhibitory manner in lung and heart. Finally, we show that Bdnf mRNA is enriched in rat brain synaptoneurosomes, with higher enrichment detected for exon I-containing transcripts. In conclusion, these results uncover two novel aspects in understanding the function of Bdnf UTRs. First, the long Bdnf 3' UTR does not repress BDNF expression in the brain. Second, exon I-derived 5' UTR has a distinct role in subcellular targeting of Bdnf mRNA.
脑源性神经营养因子(BDNF)在发育过程中促进神经元的存活和生长。在成年神经系统中,BDNF 对记忆形成和食物摄入等几种生物学过程中的突触功能很重要。此外,BDNF 还与心血管系统的发育和维持有关。Bdnf 基因包含几个替代的非翻译 5'外显子和两种 3'UTR 变体。这些全部替代 UTR 对翻译的影响尚未确定。通过报告基因和翻译核糖体亲和纯化分析,我们表明常见的 Bdnf 5'UTR,但不是 3'UTR,对翻译具有抑制作用。然而,与之前的报道相反,我们没有检测到神经元活动对 BDNF 翻译的显著影响。通过牛生长激素 3'UTR 对 Bdnf 3'UTR 的条件敲入替换的体内分析表明,Bdnf 3'UTR 是大脑中有效产生 Bdnf mRNA 和 BDNF 蛋白所必需的,但在肺和心脏中起抑制作用。最后,我们表明 Bdnf mRNA 在大鼠脑突触小体中富集,具有内含子 I 的转录本检测到更高的富集。总之,这些结果揭示了理解 Bdnf UTR 功能的两个新方面。首先,长 Bdnf 3'UTR 不会抑制大脑中的 BDNF 表达。其次,外显子 I 衍生的 5'UTR 在 Bdnf mRNA 的亚细胞靶向中具有独特的作用。