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Implementation of a multifunctional logic gate based on folding/unfolding transitions of a protein

机译:基于蛋白质折叠/展开转变的多功能逻辑门的实现

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Currently there is great interest in the development of (bio)chemical devices that can act as logic gates at the molecular level. In this work we show that the protein cytochrome c (cyt c) can be used to perform a variety of logic operations such as YES, NOT, AND, OR, and XOR. The protein accepts chemical input signals in the form of denaturants that can induce unfolding of the polypeptide chain. These conformational changes lead to alterations of the protein fluorescence intensity which is used as the output signal. The specific type of logic function performed by the protein depends on the types of denaturants and on the solvent conditions used in the experiment. We describe a dialysis cell that can be regarded as a simple hardware version of a protein gate. This device allows reversible switching of the input signals. The operation of this cell is based on a simplified strategy that employs just one type of chemical input signal, namely an aqueous solution of hydrochloric acid. The logic function performed by the device is determined by a "gate controller" (GC) input.
机译:当前,人们对可在分子水平上充当逻辑门的(生物)化学装置的开发非常感兴趣。在这项工作中,我们证明了蛋白质细胞色素c(cyt c)可用于执行各种逻辑运算,例如YES,NOT,AND,OR和XOR。蛋白质以变性剂的形式接受化学输入信号,可以诱导多肽链的展开。这些构象变化导致用作输出信号的蛋白质荧光强度的改变。蛋白质执行的逻辑功能的具体类型取决于变性剂的类型以及实验中使用的溶剂条件。我们描述了一种透析细胞,可以将其视为蛋白质门的简单硬件版本。该设备允许输入信号的可逆切换。该电池的运行基于简化的策略,该策略仅使用一种类型的化学输入信号,即盐酸水溶液。设备执行的逻辑功能由“门控制器”(GC)输入确定。

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