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Translation of DNA molecules based on optical control of DNA reactions for photonic DNA computing

机译:基于DNA反应的光学控制进行光子DNA计算的DNA分子翻译

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We are studying on photonic DNA computing, in which the nature of light and DNA is effectively utilized, as a new computing technique. In the scheme, computation is performed by manipulating DNA with chemical reactions at nano-scale and control of light at micro-scale. As a fundamental operation, translation of DNA molecules from a position to another one is important. This paper describes some experimental results on translation of DNA molecules. A DNA cluster is fabricated by making hybridization of anti-tag DNA and data DNA that is complementary to the anti-tag DNA. The translation method consists of three steps; (ⅰ) attaching data DNA to beads (fabricating DNA clusters), (ⅱ) translation of DNA clusters, and (ⅲ) detaching the data DNA from the beads. We confirmed that VCSEL array optical manipulation is applicable to step (ⅱ). For steps (ⅰ) and (ⅲ), hairpin DNA is used to achieve two stable states of DNA. The experimental results demonstrated that attaching data DNA to a bead and detaching the DNA from the bead is possible by laser irradiation with an appropriated irradiation schedule. These results show effectiveness of the optical technique for controlling DNA molecules locally.
机译:我们正在研究光子DNA计算,该技术有效地利用了光和DNA的本质,并将其作为一种新的计算技术。在该方案中,通过以纳米级的化学反应处理DNA并以微米级的光控制来进行计算。作为一项基本操作,DNA分子从一个位置到另一个位置的翻译很重要。本文介绍了一些有关DNA分子翻译的实验结果。通过使抗标签DNA和与抗标签DNA互补的数据DNA杂交来制造DNA簇。翻译方法包括三个步骤: (ⅰ)将数据DNA连接到珠子上(制造DNA簇),(ⅱ)DNA簇的翻译,以及(ⅲ)从珠子上分离出数据DNA。我们确认,VCSEL阵列光学操作适用于步骤(ⅱ)。对于步骤(ⅰ)和(ⅲ),使用发夹DNA实现DNA的两个稳定状态。实验结果表明,通过以适当的辐照时间表进行激光辐照,可以将数据DNA附着在珠子上,并从珠子上分离DNA。这些结果表明光学技术用于局部控制DNA分子的有效性。

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