Mertin S, McDowall S G, Harley V R
The Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Victoria 3052, Australia.
Nucleic Acids Res. 1999 Mar 1;27(5):1359-64. doi: 10.1093/nar/27.5.1359.
SOX (SRY-related HMG box) proteins are transcription factors that have critical roles in the regulation of numerous developmental processes. They share at least 50% homology in their HMG domains, which bind the DNA element AACAAT. How different SOX proteins achieve specific regulation of target genes is not known. We determined the DNA-binding specificity of SOX9 using a random oligonucleotide selection assay. The optimal SOX9 binding sequence, AGAACAATGG, contained a core DNA-binding element AACAAT, flanked by 5' AG and 3' GG nucleotides. The specific interaction between SOX9 and AGAACAATGG was confirmed by mobility shift assays, DNA competition and dissociation studies. The 5' AG and 3' GG flanking nucleotides enhance binding by SOX9 HMG domain, but not by the HMG domain of another SOX factor, SRY. For SRY, different 5' and 3' flanking nucleotides are preferred. Our studies support the notion that SOX proteins achieve DNA sequence specificity through subtle preferences for flanking nucleotides and that this is likely to be dictated by signature amino acids in their HMG domains. Furthermore, the related HMG domains of SOX9 and Sox17 have similar optimal binding sites that differ from those of SRY and Sox5, suggesting that SOX factors may co-evolve with their DNA targets to achieve specificity.
SOX(与SRY相关的HMG盒)蛋白是转录因子,在众多发育过程的调控中发挥着关键作用。它们的HMG结构域具有至少50%的同源性,该结构域可结合DNA元件AACAAT。目前尚不清楚不同的SOX蛋白如何实现对靶基因的特异性调控。我们使用随机寡核苷酸筛选试验确定了SOX9的DNA结合特异性。SOX9的最佳结合序列AGAACAATGG包含一个核心DNA结合元件AACAAT,两侧分别为5'端的AG和3'端的GG核苷酸。通过迁移率变动分析、DNA竞争和解离研究证实了SOX9与AGAACAATGG之间的特异性相互作用。5'端的AG和3'端的GG侧翼核苷酸增强了SOX9 HMG结构域的结合,但另一个SOX因子SRY的HMG结构域则不然。对于SRY,更倾向于不同的5'端和3'端侧翼核苷酸。我们的研究支持这样一种观点,即SOX蛋白通过对侧翼核苷酸的细微偏好来实现DNA序列特异性,这可能由其HMG结构域中的特征性氨基酸决定。此外,SOX9和Sox17的相关HMG结构域具有相似的最佳结合位点,与SRY和Sox5的不同,这表明SOX因子可能与其DNA靶标共同进化以实现特异性。