Department of Chemistry, McGill University, Montreal, Quebec, Canada.
Department of Biology, McGill University, Montreal, Quebec, Canada.
Protein Sci. 2019 Jun;28(6):1095-1105. doi: 10.1002/pro.3618. Epub 2019 Apr 24.
Intramolecular electrostatic attraction and repulsion strongly influence the conformational sampling of intrinsically disordered proteins and domains (IDPs). In order to better understand this complex relationship, we have used nuclear magnetic resonance to measure side chain pK values and pH-dependent translational diffusion coefficients for the unstructured and highly acidic carboxyl-terminus of γ-tubulin (γ-CT), providing insight into how the net charge of an IDP relates to overall expansion or collapse of the conformational ensemble. Many of the pK values in the γ-CT are shifted upward by 0.3-0.4 units and exhibit negatively cooperative ionization pH profiles, likely due to the large net negative charge that accumulates on the molecule as the pH is raised. pK shifts of this magnitude correspond to electrostatic interaction energies between the affected residues and the rest of the charged molecule that are each on the order of 1 kcal mol . Diffusion of the γ-CT slowed with increasing net charge, indicative of an expanding hydrodynamic radius (r ). The degree of expansion agreed quantitatively with what has been seen from comparisons of IDPs with different charge content, yielding the general trend that every 0.1 increase in relative charge (|Q|/res) produces a roughly 5% increase in r . While γ-CT pH titration data followed this trend nearly perfectly, there were substantially larger deviations for the database of different IDP sequences. This suggests that other aspects of an IDP's primary amino acid sequence beyond net charge influence the sensitivity of r to electrostatic interactions.
分子内静电吸引和排斥强烈影响无规卷曲蛋白质和结构域(IDP)的构象采样。为了更好地理解这种复杂的关系,我们使用核磁共振测量了未折叠和高度酸性的γ-微管蛋白(γ-CT)的侧链 pK 值和 pH 依赖性的平移扩散系数,深入了解 IDP 的净电荷如何与构象集合的整体扩展或崩溃相关。γ-CT 中的许多 pK 值向上移动了 0.3-0.4 个单位,并表现出负协同离解 pH 曲线,这可能是由于随着 pH 值的升高,分子上积累了大量的净负电荷。这种幅度的 pK 位移对应于受影响的残基与带电分子其余部分之间的静电相互作用能,每个相互作用能约为 1 kcal/mol。随着净电荷的增加,γ-CT 的扩散速度减慢,表明水动力半径(r)增大。扩展程度与具有不同电荷含量的 IDP 的比较定量一致,得出的总体趋势是,相对电荷(|Q|/res)每增加 0.1,r 就会增加大约 5%。虽然 γ-CT pH 滴定数据几乎完全符合这一趋势,但不同 IDP 序列的数据库存在较大的偏差。这表明,IDP 的一级氨基酸序列中除净电荷以外的其他方面也会影响 r 对静电相互作用的敏感性。