首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Investigation of Na+ and K+ Competitively Binding with a G-Quadruplex and Discovery of a Stable K+-Na+-Quadruplex
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Investigation of Na+ and K+ Competitively Binding with a G-Quadruplex and Discovery of a Stable K+-Na+-Quadruplex

机译:与稳定K + -NA + -Quadruplex的G-Quadreplex和发现竞争结合Na +和K +竞争结合

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摘要

DNA G-quadruplex (G4) could adopt multiple conformations, and the exact conformation is related to the presence of cations. However, the fact that cations with various concentrations could competitively bind with G4 is rarely investigated, which greatly limits the potential applications of G4-based sensors. Here, with PW17 (a G4-forming DNA sequence) as an example, Na+ and K+ with different concentrations competitively binding with PW17 are clarified by circular dichroism spectroscopy and electrospray ionization mass spectroscopy. Although Na+ could induce PW17 switching to unstable and antiparallel Na+-stabilized PW17 (2Na(+) -PW17) (C-Na(+) = 5-70 mM) and further to stable and hybrid 2Na(+)-PW17 (C-Na(+) = 70-800 mM), (C K+ = 0.1-10 mM) could replace Na+ in 2Na(+)-PW17 with 2Na(+)-PW17 transforming into Kt-stabilized PW17 (21(divided by-PW17). Moreover, the replacing ability strictly relied on C-K(+) and C-Na(+). In the switching process, a stable intermediate including a K+ and an Nat in one G4 (K+- Na+-PW17) is firstly detected. Importantly, the stable K+-Na+-PW17 is detected at 0.5 mM K+ and 140 mM Na+. Based on the facts, the interferences of Nat with the performance of PW17-based K+ sensors are investigated. With the stable K+-Na+-PW17 as a sensing probe and protoporphyrin IX (PPIX) as a G4 fluorescent read-out probe, a linear relationship between C-K( )+(500 nM-10 mM) and PPIX fluorescence is observed, which provides a fluorescence assay for detecting Kt with the co-existing 140 mM Nat This study exhibits clear evidence of Nat and K+ competitively binding with G4 and finds a novel and stable K+-Na+ PW17, which provides a clue to further explore G4 functions in Nat-contained samples.
机译:DNA G-Quadruplex(G4)可以采用多种构象,并且确切的构象与阳离子的存在有关。然而,很少研究具有各种浓度的阳离子可以竞争力地结合G4,这极大地限制了基于G4的传感器的潜在应用。这里,通过圆形二色性谱光谱和电喷雾电离质谱阐明,用PW17(G4形成DNA序列)作为实例,具有不同浓度与PW17竞争结合的Na +和K +。虽然Na +可以诱导PW17切换到不稳定和反平行的Na + -Stabilized PW17(2NA(+)-PW17)(C-Na(+)= 5-70mm)并进一步稳定和杂交2NA(+) - PW17(C- Na(+)= 70-800 mm),(C K + = 0.1-10mm)可以用2NA(+) - PW17中的Na +用2NA(+) - PW17转化为KT稳定的PW17(21(除以PW17) )。此外,严格依赖于CK(+)和C-Na(+)的更换能力。在切换过程中,首先检测在切换过程中,包括K +和一个G4(k + - Na + -PW17)中的稳定中间体。重要的是,在0.5mm k +和140mm Na +下检测稳定的K + -NA + -PW17。根据事实,研究了具有PW17的K +传感器性能的NAT的干扰。用稳定的K + -NA + -PW17作为G4荧光读出探针的感测探针和原子卟啉IX(PPIX)观察到CK()+(500nm-10mm)和PPIX荧光之间的线性关系,其提供用于用CO检测KT的荧光测定 - 这项研究表现出140毫米NAT ■NAT和K +竞争性与G4有竞争性的证据,并发现一种新颖且稳定的K + -NA + PW17,其提供了一种方法,以进一步探索NAT含有样品中的G4功能。

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