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首页> 外文期刊>Biochemistry >A Rewired Green Fluorescent Protein: Folding and Function in a Nonsequential, Noncircular GFP Permutant
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A Rewired Green Fluorescent Protein: Folding and Function in a Nonsequential, Noncircular GFP Permutant

机译:一种重束的绿色荧光蛋白:非顺序,非晕的GFP互动中的折叠和功能

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摘要

The sequential order of secondary structural elements in proteins affects the folding and activity to an unknown extent. To test the dependence on sequential connectivity, we reconnected secondary structural elements by their solvent-exposed ends, permuting their sequential order, called "rewiring". This new protein design strategy changes the topology of the backbone without changing the core side chain packing arrangement. While circular and noncircular permutations have been observed in protein structures that are not related by sequence homology, to date no one has attempted to rationally design and construct a protein with a sequence that is noncircularly permuted while conserving three-dimensional structure. Herein, we show that green fluorescent protein can be rewired, still functionally fold, and exhibit wild-type fluorescence excitation and emission spectra.
机译:蛋白质中的二级结构元素的顺序阶数会影响未知程度的折叠和活动。 为了测试对顺序连接的依赖性,我们通过其溶剂暴露的末端重新连接次级结构元素,置换其顺序顺序,称为“重新挤动”。 这种新的蛋白质设计策略改变了骨干的拓扑,而无需改变芯侧链包装布置。 迄今为止,在序列同源不相关的蛋白质结构中观察到圆形和非奇异偏移,迄今为止,没有试图理性地设计并构建具有在节省三维结构的序列的序列的序列构建蛋白质。 在此,我们表明可以重新加长绿色荧光蛋白,仍然在功能上折叠,并且表现出野生型荧光激发和发射光谱。

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