You Jing, Li Hui, Lu Xi-Ming, Li Wei, Wang Peng-Ye, Dou Shuo-Xing, Xi Xu-Guang
Beijing National Laboratory for Condensed Matter Physics and CAS Key Laboratory of Soft Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Biosci Rep. 2017 Jul 12;37(4). doi: 10.1042/BSR20170771. Print 2017 Aug 31.
G-quadruplexes are special structures existing at the ends of human telomeres, the folding kinetics of which are essential for their functions, such as in the maintenance of genome stability and the protection of chromosome ends. In the present study, we investigated the folding kinetics of G-quadruplex in different monovalent cation environments and determined the detailed kinetic parameters for Na- and K-induced G-quadruplex folding, and for its structural transition from the basket-type Na form to the hybrid-type K form. More interestingly, although Li was often used in previous studies of G-quadruplex folding as a control ion supposed to have no effect, we have found that Li can actually influence the folding kinetics of both Na- and K-induced G-quadruplexes significantly and in different ways, by changing the folding fraction of Na-induced G-quadruplexes and greatly increasing the folding rates of K-induced G-quadruplexes. The present study may shed new light on the roles of monovalent cations in G-quadruplex folding and should be useful for further studies of the underlying folding mechanism.
G-四链体是存在于人类端粒末端的特殊结构,其折叠动力学对其功能至关重要,例如在维持基因组稳定性和保护染色体末端方面。在本研究中,我们研究了G-四链体在不同单价阳离子环境中的折叠动力学,并确定了Na+和K+诱导G-四链体折叠以及其从篮式Na+形式向杂合式K+形式结构转变的详细动力学参数。更有趣的是,尽管Li+在以往G-四链体折叠研究中常被用作假定无影响的对照离子,但我们发现Li+实际上能以不同方式显著影响Na+和K+诱导的G-四链体的折叠动力学,通过改变Na+诱导的G-四链体的折叠分数并大幅提高K+诱导的G-四链体的折叠速率。本研究可能为单价阳离子在G-四链体折叠中的作用提供新的见解,对进一步研究潜在的折叠机制具有重要意义。