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Cold denaturation of a protein dimer monitored at atomic resolution

机译:以原子分辨率监测的蛋白质二聚体的冷变性

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摘要

Protein folding and unfolding are crucial for a range of biological phenomena and human diseases. Defining the structural properties of the involved transient species is therefore of prime interest. Using a combination of cold denaturation with NMR spectroscopy, we reveal detailed insight into the unfolding of the homodimeric repressor protein CylR2. Seven three-dimensional structures of CylR2 at temperatures from 25 °C to -16 °C reveal a progressive dissociation of the dimeric protein into a native-like monomeric intermediate followed by transition into a highly dynamic, partially folded state. The core of the partially folded state seems critical for biological function and misfolding.
机译:蛋白质折叠和展开对于一系列生物学现象和人类疾病至关重要。因此,最重要的是确定涉及的瞬态物质的结构性质。结合使用冷变性和NMR光谱,我们揭示了同源二聚阻遏蛋白CylR2展开的详细见解。在25°C至-16°C的温度下,CylR2的七个三维结构显示该二聚体蛋白质逐渐解离为天然的单体中间体,然后过渡为高度动态的部分折叠状态。部分折叠状态的核心似乎对于生物学功能和错误折叠至关重要。

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