School of Physical and Mathematical Sciences, Nanyang Technological University , Singapore 637371.
Biochemistry. 2014 Jan 14;53(1):247-57. doi: 10.1021/bi401161a. Epub 2013 Dec 24.
DNA has the capacity to adopt several distinct structural forms, such as duplex and quadruplex helices, which have been implicated in cellular processes and shown to exhibit important functional properties. Quadruplex-duplex hybrids, generated from the juxtaposition of these two structural elements, could find applications in therapeutics and nanotechnology. Here we used NMR and CD spectroscopy to investigate the thermal stability of two classes of quadruplex-duplex hybrids comprising fundamentally distinct modes of duplex and quadruplex connectivity: Construct I involves the coaxial orientation of the duplex and quadruplex helices with continual base stacking across the two components; Construct II involves the orthogonal orientation of the duplex and quadruplex helices with no base stacking between the two components. We have found that for both constructs, the stability of the quadruplex generally increases with the length of the stem-loop incorporated, with respect to quadruplexes comprising nonstructured loops of the same length, which showed a continuous drop in stability with increasing loop length. The stability of these complexes, particularly Construct I, can be substantially influenced by the base-pair steps proximal to the quadruplex-duplex junction. Bulges at the junction are largely detrimental to the adoption of the desired G-quadruplex topology for Construct I but not for Construct II. These findings should facilitate future design and prediction of quadruplex-duplex hybrids.
DNA 具有采用几种不同结构形式的能力,例如双链体和四链体螺旋,这些结构形式与细胞过程有关,并表现出重要的功能特性。由这两种结构元件并列产生的四链体-双链体杂种,可能在治疗学和纳米技术中有应用。在这里,我们使用 NMR 和 CD 光谱法研究了两类四链体-双链体杂种的热稳定性,这两类杂种包含了双链体和四链体连接的两种截然不同的模式:结构 I 涉及双链体和四链体螺旋的同轴取向,两个组件之间有持续的碱基堆积;结构 II 涉及双链体和四链体螺旋的正交取向,两个组件之间没有碱基堆积。我们发现,对于这两种结构,四链体的稳定性通常随着包含的茎环长度的增加而增加,与包含相同长度非结构环的四链体相比,其稳定性随着环长度的增加而连续下降。这些复合物的稳定性,特别是结构 I,可以被靠近四链体-双链体连接的碱基对步骤显著影响。连接点处的凸起对结构 I 的所需 G-四链体拓扑结构的采用有很大的不利影响,但对结构 II 没有影响。这些发现应该有助于未来的四链体-双链体杂种的设计和预测。