Docagne Fabian, Gabriel Cecilia, Lebeurrier Nathalie, Lesné Sylvain, Hommet Yannick, Plawinski Laurent, Mackenzie Eric T, Vivien Denis
UMR CNRS 6185, Bd H. Becquerel, BP 5229, 14074 Caen Cedex, France.
Biochem J. 2004 Oct 15;383(Pt 2):393-9. doi: 10.1042/BJ20040682.
Abnormal deposition of Abeta (amyloid-beta peptide) is one of the hallmarks of AD (Alzheimer's disease). This peptide results from the processing and cleavage of its precursor protein, APP (amyloid-beta precursor protein). We have demonstrated previously that TGF-beta (transforming growth factor-beta), which is overexpressed in AD patients, is capable of enhancing the synthesis of APP by astrocytes by a transcriptional mechanism leading to the accumulation of Abeta. In the present study, we aimed at further characterization of the molecular mechanisms sustaining this TGF-beta-dependent transcriptional activity. We report the following findings: first, TGF-beta is capable of inducing the transcriptional activity of a reporter gene construct corresponding to the +54/+74 region of the APP promoter, named APP(TRE) (APP TGF-beta-responsive element); secondly, although this effect is mediated by a transduction pathway involving Smad3 (signalling mother against decapentaplegic peptide 3) and Smad4, Smad2 or other Smads failed to induce the activity of APP(TRE). We also observed that the APP(TRE) sequence not only responds to the Smad3 transcription factor, but also the Sp1 (signal protein 1) transcription factor co-operates with Smads to potentiate the TGF-beta-dependent activation of APP. TGF-beta signalling induces the formation of nuclear complexes composed of Sp1, Smad3 and Smad4. Overall, the present study gives new insights for a better understanding of the fine molecular mechanisms occurring at the transcriptional level and regulating TGF-beta-dependent transcription. In the context of AD, our results provide additional evidence for a key role for TGF-beta in the regulation of Abeta production.
β淀粉样蛋白(Aβ)的异常沉积是阿尔茨海默病(AD)的标志性特征之一。这种肽由其前体蛋白淀粉样前体蛋白(APP)加工裂解产生。我们之前已经证明,在AD患者中过度表达的转化生长因子β(TGF-β)能够通过转录机制增强星形胶质细胞中APP的合成,导致Aβ积累。在本研究中,我们旨在进一步表征维持这种TGF-β依赖性转录活性的分子机制。我们报告了以下发现:首先,TGF-β能够诱导与APP启动子的+54/+74区域相对应的报告基因构建体的转录活性,该构建体称为APP(TRE)(APP TGF-β反应元件);其次,尽管这种效应是由涉及Smad3(抗五肢瘫信号肽3)和Smad4的转导途径介导的,但Smad2或其他Smads未能诱导APP(TRE)的活性。我们还观察到,APP(TRE)序列不仅对Smad3转录因子有反应,而且Sp1(信号蛋白1)转录因子与Smads协同作用,增强TGF-β依赖性的APP激活。TGF-β信号传导诱导由Sp1、Smad3和Smad4组成的核复合物形成。总体而言,本研究为更好地理解转录水平上发生的精细分子机制以及调节TGF-β依赖性转录提供了新的见解。在AD的背景下,我们的结果为TGF-β在调节Aβ产生中的关键作用提供了额外的证据。