Division of Molecular Neurobiology, National Institute for Basic Biology, and School of Life Science, Graduate University for Advanced Studies, Okazaki, Aichi 444-8787, Japan.
J Neurosci. 2014 Feb 26;34(9):3429-42. doi: 10.1523/JNEUROSCI.1597-13.2014.
We previously identified SPARC-related protein-containing immunoglobulin domains 1 (SPIG1, also known as Follistatin-like protein 4) as one of the dorsal-retina-specific molecules expressed in the developing chick retina. We here demonstrated that the knockdown of SPIG1 in the retinal ganglion cells (RGCs) of developing chick embryos induced the robust ectopic branching of dorsal RGC axons and failed to form a tight terminal zone at the proper position on the tectum. The knockdown of SPIG1 in RGCs also led to enhanced axon branching in vitro. However, this was canceled by the addition of a neutralizing antibody against brain-derived neurotrophic factor (BDNF) to the culture medium. SPIG1 and BDNF were colocalized in vesicle-like structures in cells. SPIG1 bound with the proform of BDNF (proBDNF) but very weakly with mature BDNF in vitro. The expression and secretion of mature BDNF were significantly decreased when SPIG1 was exogenously expressed with BDNF in HEK293T or PC12 cells. The amount of mature BDNF proteins as well as the tyrosine phosphorylation level of the BDNF receptor, tropomyosin-related kinase B (TrkB), in the hippocampus were significantly higher in SPIG1-knockout mice than in wild-type mice. Here the spine density of CA1 pyramidal neurons was consistently increased. Together, these results suggest that SPIG1 negatively regulated BDNF maturation by binding to proBDNF, thereby suppressing axonal branching and spine formation.
我们之前鉴定出 SPARC 相关蛋白含有免疫球蛋白结构域 1(SPIG1,也称为卵泡抑素样蛋白 4)是在发育中的鸡视网膜中表达的背侧视网膜特异性分子之一。我们在此证明,在发育中的鸡胚胎视网膜神经节细胞(RGCs)中敲低 SPIG1 会引起背侧 RGC 轴突的强烈异位分支,并且无法在顶盖的适当位置形成紧密的末端区。在 RGCs 中敲低 SPIG1 也会导致体外轴突分支增强。然而,当在培养基中添加针对脑源性神经营养因子(BDNF)的中和抗体时,这种情况会被取消。SPIG1 和 BDNF 在细胞中的囊泡样结构中共定位。SPIG1 在体外与 BDNF 的前体(proBDNF)结合,但与成熟的 BDNF 结合非常弱。当 SPIG1 与 BDNF 在 HEK293T 或 PC12 细胞中外源表达时,成熟 BDNF 的表达和分泌显著降低。SPIG1 敲除小鼠海马体中成熟 BDNF 蛋白的含量以及 BDNF 受体原肌球蛋白相关激酶 B(TrkB)的酪氨酸磷酸化水平明显高于野生型小鼠。此处 CA1 锥体神经元的棘密度持续增加。总之,这些结果表明 SPIG1 通过与 proBDNF 结合负调控 BDNF 的成熟,从而抑制轴突分支和棘突形成。