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The poly dA helix: a new structural motif for high performance DNA-based molecular switches

机译:poly dA螺旋:基于DNA的高性能分子开关的新结构基序

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We report a pH-dependent conformational transition in short, defined homopolymeric deoxyadenosines (dA(15)) from a single helical structure with stacked nucleobases at neutral pH to a double-helical, parallel-stranded duplex held together by AH(+)-H(+)A base pairs at acidic pH. Using native PAGE, 2D NMR, circular dichroism (CD) and fluorescence spectroscopy, we have characterized the two different pH dependent forms of dA(15). The pH-triggered transition between the two defined helical forms of dA(15) is characterized by CD and fluorescence. The kinetics of this conformational switch is found to occur on a millisecond time scale. This robust, highly reversible, pH-induced transition between the two well-defined structured states of dA(15) represents a new molecular building block for the construction of quick-response, pH-switchable architectures in structural DNA nanotechnology.
机译:我们报告了pH依赖的构象转变,在短的,已定义的均聚脱氧腺苷(dA(15))从单个螺旋结构与堆叠的核碱基在中性pH到由AH(+)-H保持在一起的双螺旋,平行链双链体酸性pH下的(+)A碱基对。使用天然PAGE,2D NMR,圆二色性(CD)和荧光光谱法,我们表征了dA(15)的两种不同的pH依赖形式。 dA(15)的两个定义的螺旋形式之间的pH触发跃迁的特征是CD和荧光。发现该构象开关的动力学发生在毫秒级。 dA(15)的两个明确定义的结构状态之间的这种稳健的,高度可逆的,pH诱导的过渡代表了结构DNA纳米技术中快速响应,pH可调结构的构建的新分子构造块。

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