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High specificity and tight spatial restriction of self-biotinylation by DNA and RNA G-Quadruplexes complexed in vitro and in vivo with Heme

机译:高特异性和严格的空间限制自我生物素化的DNA和RNA G-四链体在体内和体外与血红素复合

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摘要

Guanine-rich, single-stranded DNAs and RNAs that fold to G-quadruplexes (GQs) are able to complex tightly with heme and display strongly enhanced peroxidase activity. Phenolic compounds are particularly good substrates for these oxidative DNAzymes and ribozymes; we recently showed that the use of biotin-tyramide as substrate can lead to efficient GQ self-biotinylation. Such biotinylated GQs are amenable to polymerase chain reaction amplification and should be useful for a relatively non-perturbative investigation of GQs as well as GQ–heme complexes within living cells. Here, we report that in mixed solutions of GQ and duplex DNA , GQ biotinylation is specifically >10 -fold that of the duplex, even in highly concentrated DNA gels; that a three-quartet GQ is tagged by up to four biotins, whose attachment occurs more or less uniformly along the GQ but doesn’t extend significantly into a duplex appended to the GQ. This self-biotinylation can be modulated or even abolished in the presence of strong GQ ligands that compete with heme. Finally, we report strong evidence for the successful use of this methodology for labeling DNA and RNA within live, freshly dissected larval salivary glands.
机译:折叠成G四链体(GQs)的富含鸟嘌呤的单链DNA和RNA能够与血红素紧密复合,并显示出大大增强的过氧化物酶活性。酚类化合物是这些氧化性DNA酶和核酶特别好的底物。我们最近表明,使用生物素酪酰胺作为底物可以导致有效的GQ自生物素化。此类生物素化的GQ适于聚合酶链反应扩增,应用于相对无干扰的GQ以及活细胞内GQ-血红素复合物的研究。在这里,我们报道在GQ和双链体DNA的混合溶液中,即使在高浓度的DNA凝胶中,GQ的生物素化也比双链体的特异性> 10倍。一个三重四联体GQ被最多四个生物素标记,它们的附着在GQ上或多或少均匀地发生,但是并没有显着延伸到附加到GQ的双链体上。在与血红素竞争的强GQ配体存在下,这种自我生物素化可以被调节甚至被消除。最后,我们报告了强有力的证据,证明该方法已成功用于在活的,新鲜解剖的幼虫唾液腺中标记DNA和RNA。

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