Zhang Donghui, Stumpo Deborah J, Graves Joan P, DeGraff Laura M, Grissom Sherry F, Collins Jennifer B, Li Leping, Zeldin Darryl C, Blackshear Perry J
Laboratory of Neurobiology, National Institute of Environmental Health Sciences, National Institutes of Health Research Triangle Park, North Carolina 27709, USA.
J Neurochem. 2006 Aug;98(3):860-75. doi: 10.1111/j.1471-4159.2006.03930.x.
Regulatory factor X4 variant transcript 3 (Rfx4_v3) gene disruption in mice demonstrated that interruption of a single allele (heterozygous, +/-) prevented formation of the subcommissural organ, resulting in congenital hydrocephalus, while interruption of two alleles (homozygous, -/-) caused fatal failure of dorsal midline brain structure formation. To identify potential target genes for RFX4_v3, we used microarray analysis to identify differentially expressed genes in Rfx4_v3-deficient mouse brains at embryonic day 10.5, before gross structural changes were apparent. Of 109 differentially expressed transcripts, 24 were chosen for validation and 22 were confirmed by real-time PCR. Many validated genes encoded critical proteins involved in brain morphogenesis, such as the signaling components in the Wnt, bone morphogenetic protein (BMP) and retinoic acid (RA) pathways. Cx3cl1, a CX3C-type chemokine gene that is highly expressed in brain, was down-regulated in the Rfx4_v3-null mice. Both human and mouse Cx3cl1 proximal promoters contained highly conserved X-boxes, known cis-acting elements for RFX protein binding. Using the Cx3cl1 promoter as an example of a target gene, we demonstrated direct binding of RFX4_v3 to the Cx3cl1 promoter, and trans-acting activity of RFX4_v3 protein to stimulate gene expression. These data suggest that RFX4_v3 may act upstream of critical signaling pathways in the process of brain development.
小鼠中的调节因子X4变异转录本3(Rfx4_v3)基因破坏表明,单个等位基因中断(杂合子,+/-)会阻止连合下器官的形成,导致先天性脑积水,而两个等位基因中断(纯合子,-/-)会导致背侧中线脑结构形成的致命失败。为了鉴定RFX4_v3的潜在靶基因,我们使用微阵列分析来鉴定胚胎第10.5天Rfx4_v3缺陷小鼠脑中差异表达的基因,此时 gross结构变化尚不明显。在109个差异表达的转录本中,选择了24个进行验证,其中22个通过实时PCR得到确认。许多经过验证的基因编码参与脑形态发生的关键蛋白,如Wnt、骨形态发生蛋白(BMP)和视黄酸(RA)途径中的信号成分。Cx3cl1是一种在脑中高度表达的CX3C型趋化因子基因,在Rfx4_v3基因敲除小鼠中表达下调。人和小鼠的Cx3cl1近端启动子都含有高度保守的X盒,这是RFX蛋白结合的已知顺式作用元件。以Cx3cl1启动子作为靶基因的例子,我们证明了RFX4_v3与Cx3cl1启动子的直接结合,以及RFX4_v3蛋白刺激基因表达的反式作用活性。这些数据表明,RFX4_v3可能在脑发育过程中关键信号通路的上游起作用。