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Communication: Epistructural thermodynamics of soluble proteins

机译:交流:可溶性蛋白的表观热力学

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The epistructural tension of a soluble protein is defined as the reversible work per unit area required to span the interfacial solvent envelope of the protein structure. It includes an entropic penalty term to account for losses in hydrogen-bonding coordination of interfacial water and is determined by a scalar field that indicates the expected coordination of a test water molecule at any given spatial location. An exhaustive analysis of structure-reported monomeric proteins reveals that disulfide bridges required to maintain structural integrity provide the thermodynamic counterbalance to the epistructural tension, yielding a tight linear correlation. Accordingly, deviations from the balance law correlate with the thermal denaturation free energies of proteins under reducing conditions. The picomolar-affinity toxin HsTX1 has the highest epistructural tension, while the metastable cellular form of the human prion protein PrP ~C represents the least tension-balanced protein.
机译:可溶性蛋白质的表观结构张力定义为跨越蛋白质结构的界面溶剂包膜所需的每单位面积的可逆功。它包括一个熵罚项,以解决界面水的氢键配位过程中的损失,并由标量字段确定,该标量字段指示在任何给定的空间位置处测试水分子的预期配位。对结构报告的单体蛋白的详尽分析表明,维持结构完整性所需的二硫键可提供与表观结构张力的热力学平衡,从而产生紧密的线性相关性。因此,偏离平衡定律与蛋白质在还原条件下的热变性自由能相关。皮摩尔亲和毒素HsTX1具有最高的表观结构张力,而人human病毒蛋白PrP〜C的亚稳态细胞形式则代表张力平衡蛋白最少。

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