Heddi Brahim, Martín-Pintado Nerea, Serimbetov Zhalgas, Kari Teuku Mahfuzh Aufar, Phan Anh Tuân
School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore
School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore.
Nucleic Acids Res. 2016 Jan 29;44(2):910-6. doi: 10.1093/nar/gkv1357. Epub 2015 Dec 15.
G-quadruplexes are non-canonical structures of nucleic acids, in which guanine bases form planar G-tetrads (G·G·G·G) that stack on each other in the core of the structure. G-quadruplexes generally contain multiple times of four (4n) guanines in the core. Here, we study the structure of G-quadruplexes with only (4n - 1) guanines in the core. The solution structure of a DNA sequence containing 11 guanines showed the formation of a parallel G-quadruplex involving two G-tetrads and one G-triad with a vacant site. Molecular dynamics simulation established the formation of a stable G-triad·water complex, where water molecules mimic the position of the missing guanine in the vacant site. The concept of forming G-quadruplexes with missing guanines in the core broadens the current definition of G-quadruplex-forming sequences. The potential ability of such structures to bind different metabolites, including guanine, guanosine and GTP, in the vacant site, could have biological implications in regulatory functions. Formation of this unique binding pocket in the G-triad could be used as a specific target in drug design.
G-四链体是核酸的非经典结构,其中鸟嘌呤碱基形成平面G-四联体(G·G·G·G),这些四联体在结构核心中相互堆叠。G-四链体的核心通常含有多个四倍(4n)的鸟嘌呤。在此,我们研究核心仅含有(4n - 1)个鸟嘌呤的G-四链体的结构。一个含有11个鸟嘌呤的DNA序列的溶液结构显示形成了一个平行G-四链体,其中涉及两个G-四联体和一个带有空位的G-三联体。分子动力学模拟证实了稳定的G-三联体·水复合物的形成,其中水分子模拟了空位中缺失鸟嘌呤的位置。核心含有缺失鸟嘌呤的G-四链体的形成概念拓宽了当前形成G-四链体序列的定义。这种结构在空位中结合包括鸟嘌呤、鸟苷和GTP在内的不同代谢物的潜在能力,可能在调节功能方面具有生物学意义。在G-三联体中形成这种独特的结合口袋可作为药物设计的特定靶点。