Koppel Indrek, Tuvikene Jürgen, Lekk Ingrid, Timmusk Tõnis
Department of Gene Technology, Tallinn University of Technology, Tallinn, Estonia.
J Neurochem. 2015 Sep;134(6):1015-25. doi: 10.1111/jnc.13124. Epub 2015 Apr 27.
The brain-derived neurotrophic factor (BDNF) gene contains a number of 5' exons alternatively spliced with a common 3' exon. BDNF protein is synthesized from alternative transcripts as a prepro-precursor encoded by the common 3' exon IX, which has a translation start site 21 bp downstream of the splicing site. BDNF mRNAs containing exon I are an exception to this arrangement as the last three nucleotides of this exon constitute an in-frame AUG. Here, we show that this AUG is efficiently used for translation initiation in PC12 cells and cultured cortical neurons. Use of exon I-specific AUG produces higher levels of BDNF protein than use of the common translation start site, resulting from a higher translation rate. No differences in protein degradation, constitutive or regulated secretion were detected between BDNF isoforms with alternative 5' termini. As the BDNF promoter preceding exon I is known to be highly regulated by neuronal activity, our results suggest that the function of this translation start site may be efficient stimulus-dependent synthesis of BDNF protein. The brain-derived neurotrophic factor (BDNF) gene contains multiple untranslated 5' exons alternatively spliced to one common protein-coding 3' exon. However, exon I contains an in-frame ATG in a favorable translation context. Here, we show that use of this ATG is associated with more efficient protein synthesis than the commonly used ATG in exon IX.
脑源性神经营养因子(BDNF)基因包含多个5'外显子,它们可与一个共同的3'外显子进行可变剪接。BDNF蛋白由可变转录本作为前体前体合成,该前体由共同的3'外显子IX编码,其翻译起始位点位于剪接位点下游21个碱基对处。含有外显子I的BDNF mRNA是这种排列的一个例外,因为该外显子的最后三个核苷酸构成一个读框内的AUG。在这里,我们表明这个AUG在PC12细胞和培养的皮质神经元中有效地用于翻译起始。使用外显子I特异性AUG产生的BDNF蛋白水平高于使用共同的翻译起始位点,这是由于更高的翻译速率。在具有可变5'末端的BDNF异构体之间未检测到蛋白质降解、组成性或调节性分泌的差异。由于已知外显子I之前的BDNF启动子受神经元活动高度调节,我们的结果表明该翻译起始位点的功能可能是BDNF蛋白高效的刺激依赖性合成。脑源性神经营养因子(BDNF)基因包含多个未翻译的5'外显子,它们可与一个共同的蛋白质编码3'外显子进行可变剪接。然而,外显子I在一个有利的翻译环境中包含一个读框内的ATG。在这里,我们表明使用这个ATG比在外显子IX中常用的ATG与更有效的蛋白质合成相关。