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Models for Excluded Volume Interaction between an Unfolded Protein and Rigid Macromolecular Cosolutes: Macromolecular Crowding and Protein Stability Revisited

机译:展开的蛋白质和刚性高分子固溶体之间的体积相互作用排除模型:高分子拥挤和蛋白质稳定性的再研究。

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摘要

Statistical-thermodynamic models for the excluded volume interaction between an unfolded polypeptide chain and a hard sphere or hard rod cosolute are presented, permitting estimation of the free energy of transfer of a polypeptide chain with fixed radius of gyration from a dilute (ideal) solution to a solution containing volume fraction φ of either cosolute. Also presented is a general thermodynamic description of the equilibrium between a unique native state and a manifold of unfolded or partially unfolded states of a protein distinguished by their respective radii of gyration. Together with results of a Monte Carlo calculation of the distribution of radii of gyration of four different unfolded proteins published by Goldenberg in 2003, these models are used to estimate the effect of intermolecular excluded volume upon an experimentally measurable apparent two-state constant for equilibrium between native and nonnative conformations of each of the four proteins, and upon the experimentally measurable root mean-square radius of gyration of the unfolded protein. Model calculations predict that addition of inert cosolutes at volume fractions exceeding 0.1 stabilizes the native state relative to unfolded states by an amount that increases strongly with φ and with the size of the native protein relative to the size of inert cosolute, and results in significant compaction of the manifold of unfolded states. Predicted effects are in qualitative and/or semiquantitative accord with the results of several published experimental studies.
机译:给出了统计的热力学模型,用于排除未折叠的多肽链与硬球或硬棒固溶体之间的体积相互作用,从而可以估算具有固定回转半径的多肽链从稀(理想)溶液转移至包含任何一种溶质的体积分数φ的溶液。还提供了一般的热力学描述,其通过其各自的回转半径来区分蛋白质的独特天然状态与多种未折叠或部分未折叠状态之间的平衡。结合对由Goldenberg在2003年发表的四种不同未折叠蛋白的回转半径分布进行蒙特卡洛计算的结果,这些模型可用于估算分子间排除体积对实验可测量的表观两态常数之间平衡的影响。四种蛋白质各自的天然和非天然构象,以及根据实验可测的未折叠蛋白质回转的均方根半径。模型计算预测,以超过0.1的体积分数添加惰性固溶体可以使天然状态相对于未折叠状态稳定,其量随φ和天然蛋白质的大小相对于惰性固溶体的大小而大大增加,并导致显着的压实展开状态的流形。预测的效果与一些已发表的实验研究的结果在定性和/或半定量方面吻合。

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