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Solution structures of all parallel-stranded monomeric and dimeric G-quadruplex scaffolds of the human c-kit2 promoter

机译:人类c-kit2启动子的所有平行链单体和二聚G-四链体支架的溶液结构

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Previous studies have demonstrated that nuclease hypersensitivity regions of several proto-oncogenic DNA promoters, situated upstream of transcription start sites, contain guanine-rich tracts that form intramolecular G-quadruplexes stabilized by stacked G center dot G center dot G center dot G tetrads in monovalent cation solution. The human c-kit oncogenic promoter, an important target in the treatment of gastrointestinal tumors, contains two such stretches of guanine-rich tracts, designated c-kit1 and c-kit2. Our previous nuclear magnetic resonance (NMR)-based studies reported on the novel G-quadruplex scaffold of the c-kit1 promoter in K+-containing solution, where we showed for the first time that even an isolated guanine was involved in G-tetrad formation. These NMR-based studies are now extended to the c-kit2 promoter, which adopts two distinct all-parallel-stranded conformations in slow exchange, one of which forms a monomeric G-quadruplex (form-I) in 20 mM K+-containing solution and the other a novel dimeric G-quadruplex (form-II) in 100 mM K+-containing solution. The c-kit2 promoter dimeric form-II G-quadruplex adopts an unprecedented all-parallel-stranded topology where individual c-kit2 promoter strands span a pair of three-G-tetrad-layer-containing all-parallel-stranded G-quadruplexes aligned in a 3' to 5'-end orientation, with stacking continuity between G-quadruplexes mediated by a sandwiched A center dot A non-canonical pair. We propose that strand exchange during recombination events within guanine-rich segments, could potentially be mediated by a synapsis intermediate involving an intergenic parallel-stranded dimeric G-quadruplex.
机译:以前的研究表明,位于转录起始位点上游的几个原癌基因DNA启动子的核酸酶超敏区域含有鸟嘌呤丰富的区域,这些区域形成分子内G四联体,这些分子由堆叠的G中心点G中心点G中心点G四联体稳定形成阳离子溶液。人c-kit致癌启动子是治疗胃肠道肿瘤的重要靶标,包含两个这样的富含鸟嘌呤的片段,称为c-kit1和c-kit2。我们以前的基于核磁共振(NMR)的研究报道了含K +的溶液中c-kit1启动子的新型G-四链体支架,其中我们首次证明了即使分离的鸟嘌呤也参与了G-tetrad的形成。 。这些基于NMR的研究现已扩展至c-kit2启动子,该启动子在缓慢交换中采用了两个截然不同的全平行构象,其中一个在含有20 mM K +的溶液中形成了单体G-四链体(I型)。另一种是在含100 mM K +的溶液中的新型二聚体G-四链体(II型)。 c-kit2启动子二聚体形式II G-四链体采用了前所未有的全平行链拓扑结构,其中单个c-kit2启动子链跨越一对包含三个三G-四层的全平行链G-四链体对齐以3'到5'端的方向排列,G-四链体之间的堆叠连续性由夹心的A中心点A非规范对介导。我们建议在鸟嘌呤丰富的片段内重组事件期间的链交换可能由涉及基因间平行链二聚体G-四链体的突触中间体介导。

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