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Key Role of the Local Hydrophobicity in the East Patchof Plastocyanins on Their Thermal Stability and Redox Properties

机译:东部地区局部疏水性的关键作用花青素对其热稳定性和氧化还原性能的影响

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摘要

Understanding the molecular basis of the thermal stability and functionality of redox proteins has important practical applications. Here, we show a distinct thermal dependence of the spectroscopic and electrochemical properties of two plastocyanins from the thermophilic cyanobacterium Phormidium laminosum and their mesophilic counterpart from Synechocystis sp. PCC 6803, despite the similarity of their molecular structures. To explore the origin of these differences, we have mimicked the local hydrophobicity in the east patch of the thermophilic protein by replacing a valine of the mesophilic plastocyanin by isoleucine. Interestingly, the resulting mutant approaches the thermal stability, redox thermodynamics, and dynamic coupling of the flexible site motions of the thermophilic protein, indicating the existence of a close connection between the hydrophobic packing of the east patch region of plastocyanin and the functional control and stability of the oxidized and reduced forms of the protein.
机译:了解氧化还原蛋白的热稳定性和功能性的分子基础具有重要的实际应用。在这里,我们显示了来自嗜热蓝细菌拟南芥(Pormidium laminosum)的两个质体蓝蛋白和它们来自嗜蓝藻(Synechocystis sp)的中温对应物的光谱和电化学性质的独特热依赖性。 PCC 6803,尽管它们的分子结构相似。为了探索这些差异的起因,我们通过用异亮氨酸代替嗜温质体花色素的缬氨酸,来模拟嗜热蛋白东面的局部疏水性。有趣的是,所得突变体接近热稳定性,热还原蛋白的热力学和嗜热蛋白柔性位点运动的动态耦合,表明质体花青素东部斑块区域的疏水堆积与功能控制和稳定性之间存在紧密联系。蛋白质的氧化和还原形式。

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