Alexander P, Fahnestock S, Lee T, Orban J, Bryan P
Center for Advanced Research in Biotechnology, University of Maryland, Rockville 20850.
Biochemistry. 1992 Apr 14;31(14):3597-603. doi: 10.1021/bi00129a007.
We have cloned, expressed, and characterized two naturally occurring variations of the IgG-binding domain of streptococcal protein G. The domain is a stable cooperative folding unit of 56 amino acids, which maintains a unique folded structure without disulfide cross-links or tight ligand binding. We have studied the thermodynamics of the unfolding reaction for the two versions of this domain, designated B1 and B2, which differ by six amino acids. They have denaturation temperatures of 87.5 degrees C and 79.4 degrees C, respectively at pH 5.4, as determined by differential scanning calorimetry. Thermodynamic state functions for the unfolding reaction (delta G, delta H, delta S, and delta Cp) have been determined and reveal several interesting insights into the behavior of very small proteins. First, though the B1 domain has a heat denaturation point close to 90 degrees C, it is not unusually stable at physiologically relevant temperatures (delta G = 25 kJ/mol at 37 degrees C). This behavior occurs because the stability profile (delta G vs temperature) is flat and shallow due to the small delta S and delta Cp for unfolding. Related to this point is the second observation that small changes in the free energy of unfolding of the B-domain due to mutation or change in solvent conditions lead to large shifts in the heat denaturation temperature. Third, the magnitude and relative contributions of hydrophobic vs nonhydrophobic forces (per amino acid residue) to the total free energy of folding of the B-domain are remarkably typical of other globular proteins of much larger size.
我们克隆、表达并表征了链球菌蛋白G IgG结合域的两种天然存在的变体。该结构域是一个由56个氨基酸组成的稳定协同折叠单元,无需二硫键交联或紧密配体结合就能维持独特的折叠结构。我们研究了该结构域两个版本(分别命名为B1和B2,相差6个氨基酸)展开反应的热力学。通过差示扫描量热法测定,它们在pH 5.4时的变性温度分别为87.5℃和79.4℃。已确定了展开反应的热力学状态函数(ΔG、ΔH、ΔS和ΔCp),并揭示了一些关于非常小的蛋白质行为的有趣见解。首先,尽管B1结构域的热变性点接近90℃,但在生理相关温度下它并不异常稳定(37℃时ΔG = 25 kJ/mol)。出现这种行为是因为展开时的ΔS和ΔCp较小,稳定性曲线(ΔG与温度的关系)平坦且平缓。与此相关的第二个观察结果是,由于突变或溶剂条件变化导致B结构域展开自由能的微小变化会导致热变性温度的大幅偏移。第三,疏水与非疏水作用力(每个氨基酸残基)对B结构域总折叠自由能的大小和相对贡献与其他大得多的球状蛋白质非常典型。