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鉴定RFX4_v3的潜在靶基因,RFX4_v3是一种对大脑发育至关重要的转录因子。

Identification of potential target genes for RFX4_v3, a transcription factor critical for brain development.

作者信息

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

机构信息

Laboratory of Neurobiology, National Institute of Environmental Health Sciences, National Institutes of Health Research Triangle Park, North Carolina 27709, USA.

出版信息

J Neurochem. 2006 Aug;98(3):860-75. doi: 10.1111/j.1471-4159.2006.03930.x.

Abstract

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.

摘要

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。

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