Leake D, Asch W S, Canger A K, Schechter N
Department of Biochemistry and Molecular Biology, State University of New York at Stony Brook, 11794, USA.
Differentiation. 1999 Dec;65(4):181-9. doi: 10.1046/j.1432-0436.1999.6540181.x.
Neurogenesis is correlated with the progressive synthesis of diverse neuronal intermediate filaments (IF) proteins. This apparent developmental regulation of IF protein gene expression suggests that specific neurofilament proteins impart unique structural attributes that support the staged growth of the neuron. In the teleost visual pathway, the sequential expression of two IF genes, plasticin and gefiltin, is linked to the age of retinal ganglion cells (RGCs) and to the regeneration of optic axons after nerve injury. Given this pattern of plasticin and gefiltin expression, we hypothesized that the two proteins would be sequentially expressed in zebrafish retina during development. We analyzed the pattern of gefiltin expression during zebrafish development and compared it to our previous determination of plasticin expression (Canger et al. 1998). Gefiltin is expressed after plasticin, during the later stages of retinal development when axons grow past the optic chiasm and innervate their targets. Thus, during RGC development, expression of plasticin and gefiltin resembles that with optic nerve regeneration. Outside of the visual pathway, gefiltin is predominantly expressed in the central nervous system whereas plasticin is primarily expressed in the peripheral nervous system. These results suggest that the expression of these genes is regulated in a neuron-specific manner. In addition, since plasticin and gefiltin are co-expressed during RGC development, these findings suggest a more complex mechanism of transcriptional regulation which orchestrates the sequential expression of these genes.
神经发生与多种神经元中间丝(IF)蛋白的逐步合成相关。IF蛋白基因表达的这种明显的发育调控表明,特定的神经丝蛋白赋予独特的结构属性,以支持神经元的阶段性生长。在硬骨鱼视觉通路中,两种IF基因——可塑性蛋白和滤膜蛋白的顺序表达与视网膜神经节细胞(RGC)的年龄以及神经损伤后视轴突的再生有关。鉴于可塑性蛋白和滤膜蛋白的这种表达模式,我们推测这两种蛋白在斑马鱼视网膜发育过程中会顺序表达。我们分析了滤膜蛋白在斑马鱼发育过程中的表达模式,并将其与我们之前对可塑性蛋白表达的测定结果(Canger等人,1998年)进行了比较。滤膜蛋白在可塑性蛋白之后表达,在视网膜发育的后期阶段,此时轴突生长越过视交叉并支配其靶标。因此,在RGC发育过程中,可塑性蛋白和滤膜蛋白的表达类似于视神经再生时的表达。在视觉通路之外,滤膜蛋白主要在中枢神经系统中表达,而可塑性蛋白主要在外周神经系统中表达。这些结果表明,这些基因的表达是以神经元特异性方式调控的。此外,由于可塑性蛋白和滤膜蛋白在RGC发育过程中共同表达,这些发现提示了一种更复杂的转录调控机制,该机制协调了这些基因的顺序表达。