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Another Realization of Aqueous computing with Peptide Nucleic Acid

机译:用肽核酸的水性计算的另一种实现

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Head proposed a framework of aqueous computing as a code design free molecular computing. Aqueous computing handles an aqueous solution of general-purpose memory molecules with a small set of elementary laboratory operations. It fits to solve a certain pattern of NP complete problems. We focus upon scaling the address space up and propose another biomolecular realization. Peptide nucleic acid (PNA) is an artificial analogue of DNA. Since PNA-DNA hybrid has higher melting temperature than DNA-DNA case, PNA will take over hydrogen bonds and displace itself into a double strand DNA. This phenomenon can be regarded as an irreversible write-once operation on a memory molecule. PNA brains a much larger address space than natural enzyme can provide. In this paper, we propose elementary operations for aqueous computing with PNA and realize one bit memory for a feasibility study to confirm strand displacement by PNA. We also propose an idea to copy a memory state upon a DNA sequence by Using whiplash PCR.
机译:头提出了一种作为代码设计免费分子计算的水计算框架。水性计算处理通用内存分子的含水溶液,具有一小组基本实验室操作。它适合解决一定的NP完整问题。我们专注于缩放地址扩展并提出另一种生物分子实现。肽核酸(PNA)是DNA的人工类似物。由于PNA-DNA杂交体具有比DNA-DNA壳体更高的熔融温度,因此PNA将超过氢键并将其自身移入双链DNA。这种现象可以被视为在存储器分子上的不可逆的写入操作。 PNA大脑比天然酶提供更大的地址空间。在本文中,我们提出了对PNA水性计算的基本操作,并实现了一种可行性研究的一个钻头记忆,以通过PNA确认链位移。我们还提出了一种想法通过使用Whiplash PCR来在DNA序列上复制内存状态。

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