Mu Xiuqian, Beremand Phillip D, Zhao Sheng, Pershad Rashmi, Sun Hongxia, Scarpa Ann, Liang Shuguang, Thomas Terry L, Klein William H
Department of Biochemistry and Molecular Biology, The University of Texas M. D. Anderson Cancer Center, Houston, TX 77030, USA.
Development. 2004 Mar;131(6):1197-210. doi: 10.1242/dev.01010. Epub 2004 Feb 18.
Brn3b/Brn-3.2/POU4f2 is a POU domain transcription factor that is essential for retinal ganglion cell (RGC) differentiation, axonal outgrowth and survival. Our goal was to establish a link between Brn3b and the downstream events leading to RGC differentiation. We sought to determine both the number and types of genes that depend on Brn3b for their expression. RNA probes from wild-type and Brn3b(-/-) E14.5, E16.5 and E18.5 mouse retinas were hybridized to a microarray containing 18,816 retina-expressed cDNAs. At E14.5, we identified 87 genes whose expression was significantly altered in the absence of Brn3b and verified the results by real-time PCR and in situ hybridization. These genes fell into discrete sets that encoded transcription factors, proteins associated with neuron integrity and function, and secreted signaling molecules. We found that Brn3b influenced gene expression in non RGCs of the retina by controlling the expression of secreted signaling molecules such as sonic hedgehog and myostatin/Gdf8. At later developmental stages, additional alterations in gene expression were secondary consequences of aberrant RGC differentiation caused by the absence of Brn3b. Our results demonstrate that a small but crucial fraction of the RGC transcriptome is dependent on Brn3b. The Brn3b-dependent gene sets therefore provide a unique molecular signature for the developing retina.
Brn3b/Brn - 3.2/POU4f2是一种POU结构域转录因子,对视网膜神经节细胞(RGC)的分化、轴突生长和存活至关重要。我们的目标是建立Brn3b与导致RGC分化的下游事件之间的联系。我们试图确定其表达依赖于Brn3b的基因的数量和类型。将来自野生型和Brn3b(-/-) E14.5、E16.5和E18.5小鼠视网膜的RNA探针与包含18,816个视网膜表达cDNA的微阵列杂交。在E14.5时,我们鉴定出87个基因,其在缺乏Brn3b时表达发生显著改变,并通过实时PCR和原位杂交验证了结果。这些基因分为不同的类别,分别编码转录因子、与神经元完整性和功能相关的蛋白质以及分泌的信号分子。我们发现Brn3b通过控制分泌信号分子如音猬因子和肌抑素/Gdf8的表达来影响视网膜非RGC中的基因表达。在发育后期阶段,基因表达的其他改变是由于缺乏Brn3b导致的RGC异常分化的继发后果。我们的结果表明,RGC转录组中一小部分但关键的部分依赖于Brn3b。因此,Brn3b依赖的基因集为发育中的视网膜提供了独特的分子特征。