School of Life Sciences, Key Laboratory of Plant Stress Biology, State Key Laboratory of Cotton Biology , Henan University , Kaifeng 475001 , China.
Biochemistry. 2019 Sep 24;58(38):3955-3959. doi: 10.1021/acs.biochem.9b00447. Epub 2019 Sep 9.
Guanine (G) quadruplexes (G4s) can be formed by G-rich sequences when stabilized by the binding of cations (typically K or Na) and play an essential role in replication, recombination, transcription, and telomere maintenance. Understanding of the G4 folding process is crucial for determining their cellular functions. However, G4-K interactions and folding pathways are still not well understood. By using human telomeric G4 (hTG4) as an example, two binding states corresponding to two K cations binding to hTG4 were distinguished clearly and fitted precisely. The basic binding parameters during G4-K interactions were measured and calculated by taking advantage of microscale thermophoresis (MST), which monitors the changes in charge and size at the same time. The G-hairpin and G-triplex have been suggested as intermediates during G4 folding and unfolding. We further analyzed the equilibrium dissociation constants of 10 possible folding intermediates using MST; thus, the energetically favorable folding/unfolding pathways were proposed. The results might not only shed new light on G4-K interactions and G4 folding pathways but also provide an example for experimentally studying DNA-ion interactions.
鸟嘌呤(G)四链体(G4)可以由富含 G 的序列形成,当被阳离子(通常是 K 或 Na)结合稳定时,在复制、重组、转录和端粒维持中发挥重要作用。了解 G4 的折叠过程对于确定其细胞功能至关重要。然而,G4-K 相互作用和折叠途径仍未得到很好的理解。以人类端粒 G4(hTG4)为例,清楚地区分并精确拟合了对应于两个 K 阳离子结合到 hTG4 的两个结合状态。通过利用微尺度热泳动(MST)同时监测电荷和大小的变化,测量和计算了 G4-K 相互作用过程中的基本结合参数。G-发夹和 G-三聚体已被提议作为 G4 折叠和展开过程中的中间体。我们进一步使用 MST 分析了 10 种可能的折叠中间体的平衡离解常数;因此,提出了能量有利的折叠/展开途径。这些结果不仅可能为 G4-K 相互作用和 G4 折叠途径提供新的认识,而且为实验研究 DNA-离子相互作用提供了一个范例。