...
首页> 外文期刊>PLoS Genetics >A new mode of DNA binding distinguishes Capicua from other HMG-box factors and explains its mutation patterns in cancer
【24h】

A new mode of DNA binding distinguishes Capicua from other HMG-box factors and explains its mutation patterns in cancer

机译:DNA结合的新模式将Capicua与其他HMG-box因子区分开来,并解释了其在癌症中的突变模式

获取原文
   

获取外文期刊封面封底 >>

       

摘要

HMG-box proteins, including Sox/SRY (Sox) and TCF/LEF1 (TCF) family members, bind DNA via their HMG-box. This binding, however, is relatively weak and both Sox and TCF factors employ distinct mechanisms for enhancing their affinity and specificity for DNA. Here we report that Capicua (CIC), an HMG-box transcriptional repressor involved in Ras/MAPK signaling and cancer progression, employs an additional distinct mode of DNA binding that enables selective recognition of its targets. We find that, contrary to previous assumptions, the HMG-box of CIC does not bind DNA alone but instead requires a distant motif (referred to as C1) present at the C-terminus of all CIC proteins. The HMG-box and C1 domains are both necessary for binding specific TGAATGAA-like sites, do not function via dimerization, and are active in the absence of cofactors, suggesting that they form a bipartite structure for sequence-specific binding to DNA. We demonstrate that this binding mechanism operates throughout Drosophila development and in human cells, ensuring specific regulation of multiple CIC targets. It thus appears that HMG-box proteins generally depend on auxiliary DNA binding mechanisms for regulating their appropriate genomic targets, but that each sub-family has evolved unique strategies for this purpose. Finally, the key role of C1 in DNA binding also explains the fact that this domain is a hotspot for inactivating mutations in oligodendroglioma and other tumors, while being preserved in oncogenic CIC-DUX4 fusion chimeras associated to Ewing-like sarcomas.
机译:HMG-box蛋白,包括Sox / SRY(Sox)和TCF / LEF1(TCF)家族成员,通过其HMG-box结合DNA。但是,这种结合相对较弱,Sox和TCF因子都采用独特的机制来增强它们对DNA的亲和力和特异性。在这里,我们报道Capicua(CIC),一种参与Ras / MAPK信号传导和癌症进展的HMG-box转录阻遏物,采用了另外一种独特的DNA结合模式,能够选择性识别其靶标。我们发现,与以前的假设相反,CIC的HMG盒并不单独结合DNA,而是需要在所有CIC蛋白质的C末端存在一个遥远的基序(称为C1)。 HMG-box和C1结构域都是结合特定TGAATGAA样位点所必需的,它们不通过二聚作用起作用,并且在不存在辅因子的情况下具有活性,这表明它们形成了两部分结构,用于与DNA进行序列特异性结合。我们证明了这种结合机制贯穿果蝇的整个发展过程以及在人类细胞中的运作,从而确保了多个CIC目标的特异性调控。因此看来,HMG-box蛋白通常依赖于辅助DNA结合机制来调节其适当的基因组靶标,但是每个亚家族为此目的都已经发展出独特的策略。最后,C1在DNA结合中的关键作用还解释了一个事实,即该结构域是灭活少突胶质细胞瘤和其他肿瘤中突变的热点,同时保留在与尤因样肉瘤相关的致癌CIC-DUX4融合嵌合体中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号