Lazebnik Maria B, Tussie-Luna Maria Isabel, Roy Ananda L
Programs in Genetics, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
J Biol Chem. 2008 Apr 25;283(17):11078-82. doi: 10.1074/jbc.C800049200. Epub 2008 Mar 7.
The ubiquitously expressed TFII-I family of multifunctional transcription factors is involved in gene regulation as well as signaling. Despite the fact that they share significant sequence homology, these factors exhibit varied and distinct functions. The lack of knowledge about its binding sites and physiological target genes makes it more difficult to assign a definitive function for the TFII-I-related protein, BEN. We set out to determine its optimal binding site with the notion of predicting its physiological target genes. Here we report the identification of an optimal binding sequence for BEN by SELEX (systematic evolution of ligands by exponential enrichment) and confirm the relevance of this sequence by functional assays. We further performed a data base search to assign genes that have this consensus site(s) and validate several candidate genes by quantitative PCR upon stable silencing of BEN and by chromatin immunoprecipitation assay upon stable expression of BEN. Given that haploinsufficiency in BEN is causative to Williams-Beuren syndrome, these results may further lead to the identification of a set of physiologically relevant target genes for BEN and may help identify molecular determinants of Williams-Beuren syndrome.
多功能转录因子TFII-I家族广泛表达,参与基因调控和信号传导。尽管这些因子具有显著的序列同源性,但它们表现出多样且独特的功能。由于对其结合位点和生理靶基因缺乏了解,为TFII-I相关蛋白BEN确定明确的功能变得更加困难。我们着手通过预测其生理靶基因来确定其最佳结合位点。在此,我们报告通过SELEX(指数富集配体的系统进化)鉴定出BEN的最佳结合序列,并通过功能测定证实该序列的相关性。我们进一步进行数据库搜索以确定具有该共有序列的基因,并在稳定沉默BEN后通过定量PCR以及在稳定表达BEN后通过染色质免疫沉淀测定来验证几个候选基因。鉴于BEN单倍体不足是威廉姆斯-博伦综合征的病因,这些结果可能进一步导致鉴定出一组与BEN生理相关的靶基因,并可能有助于确定威廉姆斯-博伦综合征的分子决定因素。