Ayala J, Olofsson B, Tavitian A, Prochiantz A
INSERM U. 114, Chaire de Neuropharmacologie, Collège de France, Paris.
J Neurosci Res. 1989 Mar;22(3):241-6. doi: 10.1002/jnr.490220303.
Recently, the expression of rab3, a new ras-like gene, has been shown to be restricted to brain tissues (Olofsson et al., 1988). This finding has prompted us to study the expression of rab3 in different brain regions of the developing mouse. The two transcripts corresponding to rab3 (1.8 and 1.3 kb) were first detected in the brains of E13 mouse embryos and were not randomly distributed. Highest levels were found in the mesencephalon, followed by the cortex, striatum, cerebellum, and brain stem in that order. In vitro, the expression of the 1.8-kb transcript was neuron specific, whereas the small transcript was present in neurons and astrocytes. This is the first report showing developmental and regional regulation of a nervous system-restricted ras-like gene. Based on the homologies found between the rab genes and YPT1 or sec-4, we suggest that the physiological role of rab3 might be related to the stabilization of the neuronal cytoskeleton or to post-Golgi vesicle transport and fusion.
最近,一种新的类Ras基因rab3的表达已被证明仅限于脑组织(Olofsson等人,1988年)。这一发现促使我们研究rab3在发育中小鼠不同脑区的表达。与rab3相对应的两种转录本(1.8和1.3 kb)首先在E13小鼠胚胎的脑中被检测到,且分布并非随机。在中脑中发现的水平最高,其次依次为皮质、纹状体、小脑和脑干。在体外,1.8 kb转录本的表达具有神经元特异性,而小转录本则存在于神经元和星形胶质细胞中。这是首次报道显示一种神经系统限制性类Ras基因的发育和区域调控。基于rab基因与YPT1或sec - 4之间的同源性,我们认为rab3的生理作用可能与神经元细胞骨架的稳定或高尔基体后囊泡运输及融合有关。