首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Knockdown of FoxO3a induces increased neuronal apoptosis during embryonic development in zebrafish.
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Knockdown of FoxO3a induces increased neuronal apoptosis during embryonic development in zebrafish.

机译:敲除FoxO3a诱导斑马鱼胚胎发育过程中神经元凋亡的增加。

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Neuronal apoptosis sculpts the developing brain, and nearly all identified classes of neurons seem to be produced "in excess" during development. FoxO transcription factors regulate apoptosis in vitro in deprived of neurotrophins. It is unknown if FoxO3a is involved in the development of neurons. Here, we report a role of FoxO3a during neuronal development in zebrafish. By using in situ hybridization, we revealed that FoxO3a transcripts in zebrafish were gradually confined to regions of the central nervous system during embryonic development, including the forebrain, midbrain, midbrain-hindbrain boundary and hindbrain. By using FoxO3a morpholino antisense oligonucleotides, we observed that FoxO3a loss-of-function led to neural developmental defects, including increased neural apoptosis as detected by acridine orange and terminal deoxynucleotidyl transferase biotin-dUTP nick end labeling. These defects could be partially rescued by the injection of FoxO3a mRNA. In this study, we found that FoxO3a loss-of-function resulted in the decreased expression of neuronal markers as determined by in situ hybridization and relative quantitative real-time PCR. Furthermore, the activation of FoxO3a was required for the maintenance of neuron survival but not necessary for the induction of neurogenesis. Our results indicated that FoxO3a might be essential for the maintenance of neural development in zebrafish. Therefore, this work provides novel evidence of FoxO3a in the embryonic neurodevelopment from zebrafish to other mammals.
机译:神经元凋亡雕刻着正在发育的大脑,几乎所有确定的神经元类别在发育过程中似乎“过量”产生。 FoxO转录因子在缺乏神经营养蛋白的体外调节细胞凋亡。 FoxO3a是否参与神经元的发育尚不清楚。在这里,我们报道在斑马鱼的神经元发育过程中FoxO3a的作用。通过使用原位杂交,我们揭示了斑马鱼中的FoxO3a转录物在胚胎发育过程中逐渐局限于中枢神经系统区域,包括前脑,中脑,中脑-后脑边界和后脑。通过使用FoxO3a吗啉代反义寡核苷酸,我们观察到FoxO3a功能丧失导致神经发育缺陷,包括a啶橙和末端脱氧核苷酸转移酶生物素-dUTP缺口末端标记检测到的神经凋亡增加。通过注射FoxO3a mRNA可以部分挽救这些缺陷。在这项研究中,我们发现FoxO3a功能丧失导致神经元标志物的表达降低,这是通过原位杂交和相对定量实时PCR确定的。此外,FoxO3a的激活是维持神经元存活所必需的,但对于诱导神经发生则不是必需的。我们的结果表明FoxO3a可能对于维持斑马鱼的神经发育至关重要。因此,这项工作为从斑马鱼到其他哺乳动物的胚胎神经发育提供了FoxO3a的新证据。

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