首页> 外文期刊>Nucleic Acids Research >Divalent transition metal cations counteract potassium-induced quadruplex assembly of oligo(dG) sequences.
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Divalent transition metal cations counteract potassium-induced quadruplex assembly of oligo(dG) sequences.

机译:二价过渡金属阳离子抵消了钾诱导的oligo(dG)序列的四链体组装。

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Nucleic acids containing tracts of contiguous guanines tend to self-associate into four-stranded (quadruplex) structures, based on reciprocal non-Watson-Crick (G*G*G*G) hydrogen bonds. The quadruplex structure is induced/stabilized by monovalent cations, particularly potassium. Using circular dichroism, we have determined that the induction/stabilization of quadruplex structure by K+is specifically counteracted by low concentrations of Mn2+(4-10 mM), Co2+(0.3-2 mM) or Ni2+(0.3-0.8 mM). G-Tract-containing single strands are also capable of sequence-specific non-Watson-Crick interaction with d(G. C)-tract-containing (target) sequences within double-stranded DNA. The assembly of these G*G.C-based triple helical structures is supported by magnesium, but is potently inhibited by potassium due to sequestration of the G-tract single strand into quadruplex structure. We have used DNase I protection assays to demonstrate that competition between quadruplex self-association and triplex assembly is altered in thepresence of Mn2+, Co2+or Ni2+. By specifically counteracting the induction/stabilization of quadruplex structure by potassium, these divalent transition metal cations allow triplex formation in the presence of K+and shift the position of equilibrium so that a very high proportion of triplex target sites are bound. Thus, variation of the cation environment can differentially promote the assembly of multistranded nucleic acid structural alternatives.
机译:基于相互的非沃森-克里克(G * G * G * G)氢键,含有大量连续鸟嘌呤的核酸倾向于自缔合为四链(四链体)结构。四价结构被单价阳离子,特别是钾诱导/稳定。使用圆二色性,我们已经确定,低浓度的Mn2 +(4-10 mM),Co2 +(0.3-2 mM)或Ni2 +(0.3-0.8 mM)可以专门抵消K +对四链体结构的诱导/稳定作用。含有G-Tract的单链还能够与双链DNA中含有d(G.C)道的(靶标)序列进行序列特异性的非Watson-Crick相互作用。这些基于G * G.C的三螺旋结构的组装受镁的支持,但由于将G束单链螯合为四链体结构而受钾的抑制。我们已经使用DNase I保护试验来证明Mn2 +,Co2 +或Ni2 +的存在改变了四链体自缔合和三链体组装之间的竞争。通过专门抵消钾对四链体结构的诱导/稳定作用,这些二价过渡金属阳离子允许在K +存在下形成三链体并移动平衡位置,从而结合了非常高比例的三链体靶位。因此,阳离子环境的变化可以差异地促进多链核酸结构替代物的组装。

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