Kim Byul G, Evans Heather M, Dubins David N, Chalikian Tigran V
Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy, University of Toronto, 144 College Street, Toronto, Ontario M5S 3M2, Canada.
Biochemistry. 2015 Jun 9;54(22):3420-30. doi: 10.1021/acs.biochem.5b00097. Epub 2015 May 27.
In an atmosphere of potassium ions, a modified c-MYC NHE III1 sequence with two G-to-T mutations (MYC22-G14T/G23T) forms a highly stable parallel-stranded G-quadruplex. The G-quadruplex exhibits a steady increase in its melting temperature, T(M), with an increase in the concentration of the stabilizing cation K(+). On the other hand, an increase in the concentration of nonstabilizing Cs(+) or TMA(+) cations at a constant concentration of K(+) causes a sharp decline in T(M) followed by a leveling off at ∼200 mM Cs(+) or TMA(+). At 51 °C and 600 μM K(+), an increase in Cs(+) concentration from 0 to 800 mM leads to a complete unfolding of the G-quadruplex. These observations are consistent with the picture in which more counterions accumulate in the vicinity of the unfolded state of MYC22-G14T/G23T (nonspecific ion binding) than in that of the G-quadruplex state. We estimate that the unfolded state condenses one extra counterion compared to the G-quadruplex state. Taken together with our earlier results, our data suggest that sodium or potassium cations sequestered inside the central cavity stabilize the G-quadruplex conformation acting as specifically bound ligands. Nonspecifically bound (condensed) counterions may slightly stabilize, exert no influence (human telomeric G-quadruplexes), or strongly destabilize (MYC22-G14T/G23T) the G-quadruplex conformation. We offer a structural rationalization for the enhanced thermal stability of the MYC22-G14T/G23T G-quadruplex.
在钾离子氛围中,具有两个G到T突变(MYC22 - G14T/G23T)的修饰c - MYC NHE III1序列形成高度稳定的平行链G - 四链体。随着稳定阳离子K⁺浓度的增加,该G - 四链体的解链温度T(M)稳步上升。另一方面,在K⁺浓度恒定的情况下,非稳定阳离子Cs⁺或TMA⁺浓度的增加会导致T(M)急剧下降,随后在约200 mM Cs⁺或TMA⁺时趋于平稳。在51°C和600 μM K⁺条件下,Cs⁺浓度从0增加到800 mM会导致G - 四链体完全解折叠。这些观察结果与以下情况一致:与G - 四链体状态相比,在MYC22 - G14T/G23T的解折叠状态附近积累了更多的抗衡离子(非特异性离子结合)。我们估计,与G - 四链体状态相比,解折叠状态凝聚了一个额外的抗衡离子。结合我们早期的结果,我们的数据表明,隔离在中心腔内的钠或钾阳离子作为特异性结合配体稳定G - 四链体构象。非特异性结合(凝聚)的抗衡离子可能会轻微稳定、不影响(人端粒G - 四链体)或强烈破坏(MYC22 - G14T/G23T)G - 四链体构象。我们为MYC22 - G14T/G23T G - 四链体增强的热稳定性提供了结构上的合理解释。