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How the local geometry of the cu-binding site determines the thermal stability of blue copper proteins

机译:铜结合位点的局部几何形状如何决定蓝铜蛋白的热稳定性

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Identifying the factors that govern the thermal resistance of cupredoxins is essential for understanding their folding and stability, and for improving our ability to design highly stable enzymes with potential biotechnological applications. Here, we show that the thermal unfolding of plastocyanins from two cyanobacteria - the mesophilic Synechocystis and the thermophilic Phormidium - is closely related to the short-range structure around the copper center. Cu K-edge X-ray absorption spectroscopy shows that the bond length between Cu and the S atom from the cysteine ligand is a key structural factor that correlates with the thermal stability of the cupredoxins in both oxidized and reduced states. These findings were confirmed by an additional study of a site-directed mutant of Phormidium plastocyanin showing a reverse effect of the redox state on the thermal stability of the protein.
机译:识别影响铜氧还蛋白耐热性的因素对于理解其折叠性和稳定性,以及提高我们在潜在生物技术应用中设计高度稳定的酶的能力至关重要。在这里,我们表明,来自两个蓝藻细菌(嗜温的拟蓝藻和嗜热的or虫)的质体蓝素的热展开与铜中心周围的短程结构密切相关。 Cu K-edge X射线吸收光谱表明,Cu和来自半胱氨酸配体的S原子之间的键长是与氧化还原状态下的铜氧还蛋白的热稳定性相关的关键结构因素。这些发现通过对Pormidium plastocyanin的定点突变体的进一步研究得到证实,该突变体显示氧化还原状态对蛋白质的热稳定性具有相反的作用。

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