Li Hui Li, Li Zhi, Qin Lu Ye, Liu Shuang, Lau Lok Ting, Han Ji Sheng, Yu Albert Cheung Hoi
Neuroscience Research Institute, Peking University, Key Laboratory of Neuroscience (PKU), Ministry of Education and Department of Neurobiology, Peking University Health Science Center, 38 Xue Yuan Road, Beijing 100083, China.
FEBS Lett. 2006 Mar 20;580(7):1723-8. doi: 10.1016/j.febslet.2006.02.022. Epub 2006 Feb 20.
We identified a novel gene and named it, "neuronal development-associated protein (NDAP)". We detected NDAP mRNA presence in most tissues including the brain where it was present in the area from the external granular layer to the multiform layer in the cerebral cortex, and in CA1, CA2, CA3 and the dentate gyrus in the hippocampus. Its expression increased transiently in primary cultures of 2-4 day neurons and 1-2 week astrocytes and was significantly reduced in older cultures. Treatment by the neurotrophin, NT-3, significantly attenuated the decline of NDAP in neurons from days 2 to 10, whereas growth factors such as GDNF and insulin, and high potassium levels did not. To elucidate the effects of neurotrophins, we treated day 5 neurons with NT-3, BDNF or NGF for 48 h. NT-3 and BDNF both inhibited downregulation of NDAP mRNA levels but NGF slightly enhanced the already present downregulation; this effect of NGF was significant when examined in day 3 neurons. To investigate the potential function of NDAP, we over-expressed an NDAP-EGFP fusion protein in 4-week-old astrocytes. The newly expressed NDAP gradually aggregated into membrane-bound structures and eventually led to cell death through apoptosis by 24 h. Significant levels of cell death were also observed in NDAP-EGFP transfected HEK293 cells. Thus maintenance of high NDAP levels may cause apoptosis. The different regulations of NDAP expression by neurotrophins indicate that the expression of NDAP might be a checkpoint for apoptosis during neuronal development.
我们鉴定出一个新基因,并将其命名为“神经元发育相关蛋白(NDAP)”。我们在包括大脑在内的大多数组织中检测到NDAP mRNA的存在,在大脑中,它存在于大脑皮质从外颗粒层到多形层的区域,以及海马体的CA1、CA2、CA3和齿状回中。其表达在2 - 4日龄神经元和1 - 2周龄星形胶质细胞的原代培养物中短暂增加,而在较老的培养物中显著降低。神经营养因子NT - 3处理显著减弱了第2天到第10天神经元中NDAP的下降,而GDNF、胰岛素等生长因子以及高钾水平则没有这种作用。为了阐明神经营养因子的作用,我们用NT - 3、BDNF或NGF处理第5天的神经元48小时。NT - 3和BDNF都抑制了NDAP mRNA水平的下调,但NGF略微增强了已有的下调;当在第3天的神经元中检测时,NGF的这种作用是显著的。为了研究NDAP的潜在功能,我们在4周龄的星形胶质细胞中过表达了NDAP - EGFP融合蛋白。新表达的NDAP逐渐聚集形成膜结合结构,并最终在24小时内通过凋亡导致细胞死亡。在转染了NDAP - EGFP的HEK293细胞中也观察到了显著水平的细胞死亡。因此,维持高NDAP水平可能会导致凋亡。神经营养因子对NDAP表达的不同调节表明,NDAP的表达可能是神经元发育过程中凋亡的一个检查点。