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Distinct differences in metal ion specificity of RNA and DNA G-quadruplexes

机译:RNA和DNA G四联体在金属离子特异性方面的明显差异

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摘要

RNA G-quadruplexes, as their well-studied DNA analogs, require the presence of cations to fold and remain stable. This is the first comprehensive study on the interaction of RNA quadruplexes with metal ions. We investigated the formation and stability of two highly conserved and biologically relevant RNA quadruplex-forming sequences (24nt-TERRA and 18nt-NRAS) in the presence of several monovalent and divalent metal ions, namely Li+, Na+, K+, Rb+, Cs+, NH4 (+), Mg2+, Ca2+, Sr2+, and Ba2+. Circular dichroism was used to probe the influence of these metal ions on the folded fraction of the parallel G-quadruplexes, and UV thermal melting experiments allowed to assess the relative stability of the structures in each cationic condition. Our results show that the RNA quadruplexes are more stable than their DNA counterparts under the same buffer conditions. We have observed that the addition of mainly Na+, K+, Rb+, NH4 (+), as well as Sr2+ and Ba2+ in water, shifts the equilibrium to the folded quadruplex form, whereby the NRAS sequence responds stronger than TERRA. However, only K+ and Sr2+ lead to a significant increase in the stability of the folded structures, which is consistent with their coordination to the O6 atoms from the G-quartet guanosines. Compared to the respective DNA motives, dNRAS and htelo, the RNA sequences are not stabilized by Na+ ions. Finally, the difference in response between NRAS and TERRA, as well as to the corresponding DNA sequences with respect to different metal ions, could potentially be exploited for selective targeting purposes.
机译:RNA G四链体是研究程度很高的DNA类似物,需要阳离子的存在才能折叠并保持稳定。这是有关RNA四链体与金属离子相互作用的第一个综合研究。我们研究了在几种单价和二价金属离子(即Li +,Na +,K +,Rb +,Cs +,NH4)存在下两个高度保守且生物学相关的RNA四链体形成序列(24nt-TERRA和18nt-NRAS)的形成和稳定性。 (+),Mg2 +,Ca2 +,Sr2 +和Ba2 +。圆二色性用于探测这些金属离子对平行G-四链体折叠部分的影响,并且通过紫外热熔融实验评估每种阳离子条件下结构的相对稳定性。我们的结果表明,在相同的缓冲条件下,RNA四链体比其DNA对应物更稳定。我们已经观察到,在水中主要添加Na +,K +,Rb +,NH4(+)以及Sr2 +和Ba2 +,会将平衡移至折叠的四链体形式,从而NRAS序列的响应比TERRA强。但是,只有K +和Sr2 +会导致折叠结构的稳定性显着提高,这与它们与G四重态鸟苷中的O6原子的配位相一致。与各自的DNA动机dNRAS和htelo相比,RNA序列不能被Na +离子稳定。最后,NRAS和TERRA之间的反应差异以及相对于不同金属离子的相应DNA序列可能会被利用来进行选择性靶向。

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