Institute of Molecular Biology and Biophysics, ETH Zurich, 8093 Zurich, Switzerland.
J Mol Biol. 2011 May 20;408(5):922-31. doi: 10.1016/j.jmb.2011.03.008. Epub 2011 Mar 17.
The Bombyx mori pheromone-binding protein (BmorPBP) undergoes a pH-dependent conformational transition from a form at basic pH, which contains an open cavity suitable for ligand binding (BmorPBP(B)), to a form at pH 4.5, where this cavity is occupied by an additional helix (BmorPBP(A)). This helix α7 is formed by the C-terminal dodecapeptide 131-142, which is flexibly disordered on the protein surface in BmorPBP(B) and in its complex with the pheromone bombykol. Previous work showed that the ligand-binding cavity cannot accommodate both bombykol and helix α7. Here we further investigated mechanistic aspects of the physiologically crucial ejection of the ligand at lower pH values by solution NMR studies of the variant protein BmorPBP(1-128), where the C-terminal helix-forming tetradecapeptide is removed. The NMR structure of the truncated protein at pH 6.5 corresponds closely to BmorPBP(B). At pH 4.5, BmorPBP(1-128) maintains a B-type structure that is in a slow equilibrium, on the NMR chemical shift timescale, with a low-pH conformation for which a discrete set of (15)N-(1)H correlation peaks is NMR unobservable. The full NMR spectrum was recovered upon readjusting the pH of the protein solution to 6.5. These data reveal dual roles for the C-terminal tetradecapeptide of BmorPBP in the mechanism of reversible pheromone binding and transport, where it governs dynamic equilibria between two locally different protein conformations at acidic pH and competes with the ligand for binding to the interior cavity.
家蚕信息素结合蛋白(BmorPBP)在 pH 值依赖性构象转变中经历构象变化,从碱性 pH 值下含有开放空腔适合配体结合的形式(BmorPBP(B))转变为 pH 值为 4.5 时,空腔被额外的螺旋(BmorPBP(A))占据。该螺旋α7由 C 端十二肽 131-142 形成,在 BmorPBP(B)及其与信息素 bombykol 的复合物中,该螺旋在蛋白质表面上呈现灵活的无序状态。先前的工作表明,配体结合腔不能同时容纳 bombykol 和螺旋α7。在这里,我们通过对变体蛋白 BmorPBP(1-128)的溶液 NMR 研究进一步研究了在较低 pH 值下生理上关键的配体排出的机制方面,其中去除了 C 端形成螺旋的十四肽。在 pH 值为 6.5 时,截断蛋白的 NMR 结构与 BmorPBP(B)非常接近。在 pH 值为 4.5 时,BmorPBP(1-128)保持 B 型结构,在 NMR 化学位移时间尺度上处于缓慢平衡,与低 pH 值构象处于平衡状态,对于该构象,一组离散的(15)N-(1)H 相关峰在 NMR 上不可见。通过将蛋白质溶液的 pH 值重新调整为 6.5,恢复了完整的 NMR 光谱。这些数据揭示了 BmorPBP 的 C 端十四肽在可逆信息素结合和运输机制中的双重作用,其中它控制酸性 pH 值下两种局部不同蛋白质构象之间的动态平衡,并与配体竞争结合到内部腔。