Jules Stein Eye Institute and Department of Chemistry and Biochemistry, University of California, Los Angeles, CA 90095-7008.
Proc Natl Acad Sci U S A. 2013 Nov 12;110(46):E4306-15. doi: 10.1073/pnas.1318754110. Epub 2013 Oct 28.
The studies presented here explore the relationship between protein packing and molecular flexibility using ligand-binding cavity mutants of T4 lysozyme. Although previously reported crystal structures of the mutants investigated show single conformations that are similar to the WT protein, site-directed spin labeling in solution reveals additional conformational substates in equilibrium exchange with a WT-like population. Remarkably, binding of ligands, including the general anesthetic halothane shifts the population to the WT-like state, consistent with a conformational selection model of ligand binding, but structural adaptation to the ligand is also apparent in one mutant. Distance mapping with double electron-electron resonance spectroscopy and the absence of ligand binding suggest that the new substates induced by the cavity-creating mutations represent alternate packing modes in which the protein fills or partially fills the cavity with side chains, including the spin label in one case; external ligands compete with the side chains for the cavity space, stabilizing the WT conformation. The results have implications for mechanisms of anesthesia, the response of proteins to hydrostatic pressure, and protein engineering.
本文利用 T4 溶菌酶的配体结合腔突变体研究了蛋白质堆积与分子柔性之间的关系。尽管先前报道的突变体的晶体结构显示出与 WT 蛋白相似的单一构象,但溶液中的定点自旋标记揭示了与 WT 样种群处于平衡交换的额外构象亚稳态。值得注意的是,配体的结合,包括全身麻醉剂氟烷,将种群转移到 WT 样状态,与配体结合的构象选择模型一致,但在一种突变体中也明显存在结构适应配体的现象。双电子-电子共振光谱的距离映射和配体结合的缺失表明,腔形成突变引起的新亚稳态代表了蛋白质用侧链填充或部分填充腔的替代堆积模式,在一种情况下包括自旋标记;外部配体与侧链竞争腔空间,稳定 WT 构象。这些结果对麻醉机制、蛋白质对静水压力的反应以及蛋白质工程具有重要意义。