Di Gregorio A, Corbo J C, Levine M
Division of Genetics, Department of Molecular and Cellular Biology, University of California, 401 Barker Hall, Berkeley, California 94720, USA.
Dev Biol. 2001 Jan 1;229(1):31-43. doi: 10.1006/dbio.2000.9964.
The Ciona forkhead/HNF-3beta gene (Ci-fkh) is expressed in the primary axial tissues of the developing tadpole, including the notochord, endoderm, and rudimentary floor plate of the CNS. In an effort to determine the basis for this complex pattern of expression we have conducted a detailed analysis of the Ci-fkh 5'-regulatory region. Different 5' sequences were attached to a lacZ reporter gene and analyzed in electroporated Ciona embryos. A short regulatory sequence (AS) located approximately 1.7 kb upstream of the transcribed region is shown to be essential for expression in all three axial tissues. The proximal 20 bp of the AS contains overlapping Snail repressor elements and a T-box motif. Deleting these sequences causes the loss of reporter gene expression in the endoderm, as well as expanded expression in the neural tube. These results suggest that a T-box gene such as Ci-VegTR activates Ci-fkh expression in the endoderm, while the Ci-Sna repressor excludes expression from the lateral ependymal cells and restricts the Ci-fkh pattern to the rudimentary floor plate in ventral regions of the neural tube. We also present evidence for Ci-fkh positive autofeedback, whereby the Ci-Fkh protein binds to critical activator sites within the Ci-fkh 5'-regulatory region and helps maintain high levels of expression. We discuss these results with respect to forkhead/HNF-3beta regulation in vertebrates.
海鞘叉头框/HNF-3β基因(Ci-fkh)在发育中的蝌蚪的主要轴向组织中表达,包括脊索、内胚层和中枢神经系统的原始底板。为了确定这种复杂表达模式的基础,我们对Ci-fkh 5'调控区域进行了详细分析。将不同的5'序列连接到lacZ报告基因上,并在电穿孔的海鞘胚胎中进行分析。位于转录区域上游约1.7 kb处的一个短调控序列(AS)被证明对在所有三个轴向组织中的表达至关重要。AS的近端20 bp包含重叠的Snail抑制元件和一个T-box基序。删除这些序列会导致报告基因在内胚层中表达缺失,以及在神经管中表达扩大。这些结果表明,诸如Ci-VegTR这样的T-box基因激活内胚层中的Ci-fkh表达,而Ci-Sna抑制因子排除侧脑室管膜细胞中的表达,并将Ci-fkh模式限制在神经管腹侧区域的原始底板。我们还提供了Ci-fkh正自反馈的证据,即Ci-Fkh蛋白与Ci-fkh 5'调控区域内的关键激活位点结合,并有助于维持高水平的表达。我们结合脊椎动物中叉头框/HNF-3β的调控来讨论这些结果。