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Two-quartet kit* G-quadruplex is formed via double-stranded pre-folded structure

机译:通过双链预折叠结构形成双距离套件* G-quadruplex

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摘要

In the promoter of c-KIT proto-oncogene, whose deregulation has been implicated in many cancers, three G-rich regions (kit1, kit* and kit2) are able to fold into G-quadruplexes. While kit1 and kit2 have been studied in depth, little information is available on kit* folding behavior despite its key role in regulation of c-KIT transcription. Notably, kit* contains consensus sites for SP1 and AP2 transcription factors. Herein, a set of complementary spectroscopic and biophysical methods reveals that kit*, d[GGCGAGGAGGGGCGTGGCCGGC], adopts a chair type antiparallel G-quadruplex with two G-quartets at physiological relevant concentrations of KCl. Heterogeneous ensemble of structures is observed in the presence of Na+ and NH4+ ions, which however stabilize pre-folded structure. In the presence of K+ ions stacking interactions of adenine and thymine residues on the top G-quartet contribute to structural stability together with a G10 center dot C18 base pair and a fold-back motif of the five residues at the 3-terminal under the bottom G-quartet. The 3-tail enables formation of a bimolecular pre-folded structure that drives folding of kit* into a single G-quadruplex. Intriguingly, kinetics of kit* G-quadruplex formation matches timescale of transcriptional processes and might demonstrate interplay of kinetic and thermodynamic factors for understanding regulation of c-KIT proto-oncogene expression.
机译:在C-kit原癌基因的启动子中,其放松管制在许多癌症中涉及,富含3个G的地区(Kit1,试剂盒*和kit2)能够折叠成G-四边形。虽然Kit1和Kit2已经深入研究,但在套件时提供的信息很少,尽管其在C-kit转录的调节中作用具有关键作用,但折叠行为仍然存在。值得注意的是,套件*包含SP1和AP2转录因子的共识站点。这里,一组互补的光谱和生物物理方法揭示了试剂盒*,D [GGCGAGGAGGGGGCGTGCGCGGCGGCGC],采用椅子型反平行G-QuadRuple与在生理相关浓度的KCl处的两个G-四重奏。在Na +和NH 4 +离子的存在下观察到结构的异质整合,但是稳定预折叠结构。在k +离子的存在下,顶部G-quartet上的腺嘌呤和胸腺嘧啶残基的相互作用有助于与G10中心点C18碱基对的结构稳定性以及在底部的3端子下的五个残基的折叠基序。 G-quartet。 3尾能够形成双分子预折叠结构,使套件*折叠成单个G-QuadRuplex。有趣的是,套件的动力学* G-Quadruplem的形成与转录过程的时间段匹配,并且可能会展示动力学和热力学因素的相互作用,以了解C-kit原癌基因表达的调节。

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  • 来源
    《Nucleic Acids Research》 |2019年第5期|共13页
  • 作者单位

    Natl Inst Chem Slovenian NMR Ctr Ljubljana 1000 Slovenia;

    Univ Padua Dept Pharmaceut &

    Pharmacol Sci I-35131 Padua Italy;

    Univ Padua Dept Pharmaceut &

    Pharmacol Sci I-35131 Padua Italy;

    Natl Inst Chem Slovenian NMR Ctr Ljubljana 1000 Slovenia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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