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High-Fidelity DNA Hybridization Using Programmable Molecular DNA Devices

机译:使用可编程分子DNA装置的高保真DNA杂交

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The hybridization of complementary nucleic acid strands is the most basic of all reactions involving nucleic acids, but has a major limitation: the specificity of hybridization reactions depends critically on the lengths of the complementary pairs of strands and can drop to very low values for sufficiently long strands. This reduction in specificity occurs especially in the presence of noise in the form of other competing strands that have sequence segments identical to the target. This limits the scale and accuracy of biotechnology and nanotechnology applications which depend on hybridization reactions. Our paper develops techniques for ensuring specific high-fidelity DNA hybridization reactions for target strands of arbitrary length. Our protocol is executed autonomously, without external mediation and driven by a series of conversions, of single stranded DNA into duplex DNA that help overcome kinetic energy traps, similar to DNA walkers.
机译:互补核酸链的杂交是涉及核酸的所有反应的最基本,但具有一个主要限制:杂交反应的特异性尺寸统称在互补股对的长度上,并且可以使其降至非常低的值股票。特异性的这种降低特别是在存在与靶标相同的序列段的其他竞争链形式的噪声存在中。这限制了依赖于杂交反应的生物技术和纳米技术应用的规模和准确性。我们的论文开发了用于确保针对任意长度的靶线的特异性高保真DNA杂交反应的技术。我们的协议是自主执行的,没有外部调解并由一系列转换驱动,单链DNA进入双相DNA,帮助克服动能陷阱,类似于DNA步行者。

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