Spittau Björn, Wang Ziyuan, Boinska Dagmara, Krieglstein Kerstin
Center of Anatomy, Department of Neuroanatomy, University of Göttingen, Kreuzbergring, Germany.
J Cell Biochem. 2007 Jun 1;101(3):712-22. doi: 10.1002/jcb.21228.
The recently identified TGF-beta-inducible early gene 3 (Tieg3) belongs to the gene family of Sp1/Klf-like transcription factors and is upregulated immediately after TGF-beta treatment. To explore the molecular mechanisms of Tieg3-mediated transcriptional control, GAL4-based luciferase assays were performed in order to determine regulatory domains within the Tieg3 protein. Using EGFP-fusion proteins, we monitored the intracellular localization and mapped putative nuclear localization signals (NLS). We provide evidence that the amino-terminus of Tieg3 is essential to repress the transcription and that the loss of the mSin3A interacting domain (SID) disrupts the repressive effects of Tieg3 in the oligodendroglial cell line OLI-neu. Herein we also demonstrate that the zinc finger containing DNA-binding domain (DBD) alone is able to activate the transcription of a reporter gene. Sequence analysis of the zinc finger region revealed no similarities to known activation domains. Analysis of the subcellular localization disclosed Tieg3 as a nuclear protein. Further, we identified the DBD as being essential for the nuclear localization of Tieg3. We detected two closely located putative bipartite NLS within the second and third zinc finger, which are conserved among the members of the Tieg family of proteins. Together these results may help to increase the understanding of Tieg3-mediated transcriptional control and to characterize this TGF-beta-induced Sp1/Klf-like transcription factor.
最近发现的转化生长因子β诱导早期基因3(Tieg3)属于Sp1/Klf样转录因子基因家族,在转化生长因子β处理后会立即上调。为了探究Tieg3介导的转录调控的分子机制,进行了基于GAL4的荧光素酶分析,以确定Tieg3蛋白内的调控结构域。利用增强绿色荧光蛋白(EGFP)融合蛋白,我们监测了细胞内定位并绘制了假定的核定位信号(NLS)。我们提供的证据表明,Tieg3的氨基末端对于抑制转录至关重要,并且mSin3A相互作用结构域(SID)的缺失会破坏Tieg3在少突胶质细胞系OLI-neu中的抑制作用。在此我们还证明,仅含锌指的DNA结合结构域(DBD)就能激活报告基因的转录。锌指区域的序列分析显示与已知的激活结构域没有相似性。亚细胞定位分析表明Tieg3是一种核蛋白。此外,我们确定DBD对于Tieg3的核定位至关重要。我们在第二个和第三个锌指内检测到两个位置紧密的假定双分型NLS,它们在Tieg蛋白家族成员中是保守的。这些结果共同有助于增进对Tieg3介导的转录调控的理解,并对这种转化生长因子β诱导的Sp1/Klf样转录因子进行表征。