Shim Sungbo, Kim Yujin, Shin Jongdae, Kim Jieun, Park Soochul
Department of Biological Science, Sookmyung Women's University, Chungpa-Dong 2-Ka, Yongsan-Ku, Seoul 140-742, South Korea.
Mol Cell Biol. 2007 Mar;27(5):1614-30. doi: 10.1128/MCB.01429-06. Epub 2006 Dec 18.
The mouse ephA8 gene is expressed in a rostral-to-caudal gradient in the developing superior colliculus, and these EphA gradients may contribute to the proper development of the retinocollicular projection. Thus, it is of considerable interest to elucidate how the ephA8 gene expression is controlled by upstream regulators during the development of the mesencephalon. In this study, we employed in vivo expression analysis in transgenic mouse embryos to dissect the cis-acting DNA regulatory region, leading to the identification of a CGGTCA sequence critical for the ephA8 enhancer activity. Using this element as the target in a yeast one-hybrid system, we identified a Meis homeobox transcription factor. Significantly, DNA binding sites for Pbx, another TALE homeobox transcription factor, were also identified in the ephA8 enhancer region. Meis2 and Pbx1/2 are specifically expressed in the entire region of the dorsal mesencephalon, where specific colocalization of EphA8 and Meis is restricted to a subset of cells. Meis2 and Pbx2 synergistically bind the ephA8 regulatory sequence in vitro, and this interaction is critical for the transcriptional activation of a reporter construct bearing the ephA8 regulatory region in the presence of histone deacetylase inhibitor. More importantly, when expressed in the embryonic midbrain, the dominant-negative form of Meis down-regulates endogenous ephA8. Interestingly, we found that both Meis2 and Pbx2 are constitutively bound in the ephA8 regulatory region in the dorsal mesencephalon. These studies strongly suggest that Meis and Pbx homeobox transcription factors tightly associate with the ephA8 regulatory sequence and require an additional unidentified regulator to ensure the specific activation of ephA8.
小鼠epha8基因在发育中的上丘中以从嘴端到尾端的梯度表达,这些EphA梯度可能有助于视网膜-上丘投射的正常发育。因此,阐明在中脑发育过程中epha8基因表达是如何由上游调节因子控制的,具有相当大的研究意义。在本研究中,我们利用转基因小鼠胚胎进行体内表达分析,以剖析顺式作用DNA调控区域,从而鉴定出对epha8增强子活性至关重要的CGGTCA序列。利用该元件作为酵母单杂交系统的靶点,我们鉴定出一种Meis同源框转录因子。值得注意的是,在epha8增强子区域还鉴定出了另一种TALE同源框转录因子Pbx的DNA结合位点。Meis2和Pbx1/2在背侧中脑的整个区域特异性表达,其中EphA8和Meis的特异性共定位仅限于一部分细胞。Meis2和Pbx2在体外协同结合epha8调控序列,并且在存在组蛋白去乙酰化酶抑制剂的情况下,这种相互作用对于携带epha8调控区域的报告构建体的转录激活至关重要。更重要的是,当在胚胎中脑表达时,Meis的显性负性形式会下调内源性epha8。有趣的是,我们发现Meis2和Pbx2在背侧中脑的epha8调控区域中持续结合。这些研究强烈表明,Meis和Pbx同源框转录因子与epha8调控序列紧密相关,并且需要另一种未鉴定的调节因子来确保epha8的特异性激活。