Veldman Matthew B, Bemben Michael A, Thompson Robert C, Goldman Daniel
Neuroscience Program, University of Michigan, 5045 Biomedical Sciences Research Building, 109 Zina Pitcher Place, Ann Arbor, MI 48109, USA.
Dev Biol. 2007 Dec 15;312(2):596-612. doi: 10.1016/j.ydbio.2007.09.019. Epub 2007 Sep 22.
Unlike mammals, teleost fish are able to mount an efficient and robust regenerative response following optic nerve injury. Although it is clear that changes in gene expression accompany axonal regeneration, the extent of this genomic response is not known. To identify genes involved in successful nerve regeneration, we analyzed gene expression in zebrafish retinal ganglion cells (RGCs) regenerating their axons following optic nerve injury. Microarray analysis of RNA isolated by laser capture microdissection from uninjured and 3-day post-optic nerve injured RGCs identified 347 up-regulated and 29 down-regulated genes. Quantitative RT-PCR and in situ hybridization were used to verify the change in expression of 19 genes in this set. Gene ontological analysis of the data set suggests regenerating neurons up-regulate genes associated with RGC development. However, not all regeneration-associated genes are expressed in differentiating RGCs indicating the regeneration is not simply a recapitulation of development. Knockdown of six highly induced regeneration-associated genes identified two, KLF6a and KLF7a, that together were necessary for robust RGC axon re-growth. These results implicate KLF6a and KLF7a as important mediators of optic nerve regeneration and suggest that not all induced genes are essential to mount a regenerative response.
与哺乳动物不同,硬骨鱼在视神经损伤后能够产生高效且强劲的再生反应。虽然很明显基因表达的变化伴随着轴突再生,但这种基因组反应的程度尚不清楚。为了鉴定参与成功神经再生的基因,我们分析了视神经损伤后其轴突正在再生的斑马鱼视网膜神经节细胞(RGCs)中的基因表达。通过激光捕获显微切割从未受伤以及视神经损伤后3天的RGCs中分离RNA进行微阵列分析,鉴定出347个上调基因和29个下调基因。使用定量逆转录聚合酶链反应(RT-PCR)和原位杂交来验证该组中19个基因表达的变化。对该数据集的基因本体分析表明,再生神经元上调了与RGC发育相关的基因。然而,并非所有与再生相关的基因都在分化的RGCs中表达,这表明再生不仅仅是发育的重演。敲低六个高度诱导的与再生相关的基因,鉴定出两个基因,即KLF6a和KLF7a,它们共同对于强劲的RGC轴突重新生长是必需的。这些结果表明KLF6a和KLF7a是视神经再生的重要介质,并表明并非所有诱导基因对于产生再生反应都是必不可少的。