Department of Biochemistry and Molecular Biology, Chang Gung University, Gueishan, Taiwan, Republic of China.
J Neurosci Res. 2013 Jan;91(1):51-61. doi: 10.1002/jnr.23145. Epub 2012 Oct 22.
Growth arrest-specific 7 (Gas7) is preferentially expressed in the nervous system and plays an important role during neuritogenesis in mammals. However, the structure and function of Gas7 homologs have not been studied in nonmammalian vertebrates used as models. In this report, we identify a Gas7 gene in zebrafish that we termed zfGas7. The transcript of this gene was produced by canonical splicing, and its protein product contained a Fes/CIP4 homology and a coiled-coil domain. In early zebrafish embryos, RT-PCR analyses revealed that zfGas7 was initially expressed at 5.3 hr postfertilization (hpf), followed by an increase of expression at 10 hpf and further accumulation during somitogenesis at 48 hpf. Spatiotemporal analyses further showed that Gas7 mRNA was detected in the brain, somite, and posterior presomitic mesoderm regions during somitogenesis. At 36 hpf, zfGas7 mRNA was detected in the brain and somite but was later found only in neuronal clusters of the brain at 52 hpf. Gas7 knockdown with morpholino antisense oligonucleotides (Gas7MO) reduced the number of HuC-positive neurons in the trigeminal and statoacoustic ganglions and produced deformed phenotypes, such as flattening of the top of the head. Notably, the neuron reduction and deformed phenotypes observed in Gas7MO embryos were partially rescued by ectopic expression of Gas7. Because altered somitogenesis and pigmentation were also found in the morphants, the neuronal phenotypes observed likely are due to a general developmental delay of embryogenesis. These results indicate that Gas7 is expressed in neuronal cells but is not specifically required for neuronal development in vertebrates.
生长停滞特异性蛋白 7(Gas7)在神经系统中优先表达,在哺乳动物的神经突生成过程中发挥重要作用。然而,作为模型的非哺乳动物脊椎动物中的 Gas7 同源物的结构和功能尚未得到研究。在本报告中,我们在斑马鱼中鉴定出一个 Gas7 基因,我们将其命名为 zfGas7。该基因的转录物通过经典剪接产生,其蛋白产物包含一个 Fes/CIP4 同源结构域和一个卷曲螺旋结构域。在早期斑马鱼胚胎中,RT-PCR 分析显示 zfGas7 最初在受精后 5.3 小时(hpf)表达,随后在 10 hpf 时表达增加,并在体节形成时在 48 hpf 时进一步积累。时空分析进一步显示,在体节形成过程中,Gas7 mRNA 可在大脑、体节和后体节前中胚层区域检测到。在 36 hpf 时,zfGas7 mRNA 可在大脑和体节中检测到,但在 52 hpf 时仅在大脑的神经元簇中发现。用反义寡核苷酸(Gas7MO)敲低 Gas7 减少了三叉神经和位听神经节中 HuC 阳性神经元的数量,并产生了畸形表型,如头部顶部变平。值得注意的是,Gas7 的异位表达部分挽救了 Gas7MO 胚胎中神经元减少和畸形表型。由于在形态发生体中也发现了体节形成和色素沉着的改变,因此观察到的神经元表型可能是由于胚胎发生的整体发育延迟所致。这些结果表明,Gas7 在神经元细胞中表达,但不是脊椎动物神经元发育所必需的。