Ttd1a 启动子参与盐和光胁迫下的 DNA-蛋白质结合。
Ttd1a promoter is involved in DNA-protein binding by salt and light stresses.
机构信息
Department of Life Science, II University of Naples, via Vivaldi 43, 81100, Caserta, Italy.
出版信息
Mol Biol Rep. 2011 Aug;38(6):3787-94. doi: 10.1007/s11033-010-0494-3. Epub 2010 Nov 23.
Stress modulation of retrotransposons may play a role in generating host genetic plasticity in response to environmental stress. Transposable elements have been suggested to contribute to the evolution of genes, by providing cis-regulatory elements leading to changes in expression patterns. Indeed, their promoter elements are similar to those of plant defence genes and may bind similar defence-induced transcription factors. We previously isolated a new Ty1-copia retrontrasposon named Ttd1a and showed its activation and mobilization in salt and light stresses. Here, using a retard mobility assay in Triticum durum L. crude extracts, we showed that the CAAT motif present in the Ttd1a retrotransposon promoter, is involved in DNA-protein binding under salt and light stresses and therefore in the regulation of Ttd1a activity. Data presented in this paper suggest that nuclear proteins can interact with the CAAT motif either directly or indirectly and enhance Ttd1a by a specific ligand-dependent activation under stress.
转座子的应激调节可能在宿主对环境应激产生遗传可塑性方面发挥作用。转座元件被认为通过提供顺式调控元件导致表达模式的变化,从而有助于基因的进化。事实上,它们的启动子元件与植物防御基因的相似,可能与类似的防御诱导转录因子结合。我们之前分离了一个名为 Ttd1a 的新型 Ty1-copia 反转录转座子,并表明其在盐和光胁迫下的激活和移动。在这里,我们使用 Triticum durum L. 粗提物中的阻滞迁移分析表明,Ttd1a 反转录转座子启动子中存在的 CAAT 基序参与盐和光胁迫下的 DNA-蛋白质结合,从而参与 Ttd1a 的调控。本文提供的数据表明,核蛋白可以直接或间接地与 CAAT 基序相互作用,并通过应激下特定配体依赖性激活来增强 Ttd1a。