Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St. Louis, MO, 63104, USA.
Sci Rep. 2019 Aug 23;9(1):12304. doi: 10.1038/s41598-019-48839-1.
A pre-existing, allosteric equilibrium between closed (E*) and open (E) conformations of the active site influences the level of activity in the trypsin fold and defines ligand binding according to the mechanism of conformational selection. Using the clotting protease thrombin as a model system, we investigate the molecular determinants of the E*-E equilibrium through rapid kinetics and X-ray structural biology. The equilibrium is controlled by three residues positioned around the active site. W215 on the 215-217 segment defining the west wall of the active site controls the rate of transition from E to E* through hydrophobic interaction with F227. E192 on the opposite 190-193 segment defining the east wall of the active site controls the rate of transition from E* to E through electrostatic repulsion of E217. The side chain of E217 acts as a lever that moves the entire 215-217 segment in the E*-E equilibrium. Removal of this side chain converts binding to the active site to a simple lock-and-key mechanism and freezes the conformation in a state intermediate between E* and E. These findings reveal a simple framework to understand the molecular basis of a key allosteric property of the trypsin fold.
一种预先存在的、位于活性部位的闭合(E*)和开放(E)构象之间的变构平衡,影响着胰蛋白酶折叠的活性水平,并根据构象选择机制定义配体结合。我们使用凝血蛋白酶凝血酶作为模型系统,通过快速动力学和 X 射线结构生物学研究了 E*-E 平衡的分子决定因素。该平衡受三个位于活性部位周围的残基控制。位于活性部位西壁的 215-217 片段上的 W215 通过与 F227 的疏水相互作用控制从 E 到 E的转变速率。位于活性部位东壁的相反的 190-193 片段上的 E192 通过 E217 的静电排斥控制从 E到 E 的转变速率。E217 的侧链作为一个杠杆,在 E*-E 平衡中移动整个 215-217 片段。去除该侧链将结合到活性部位转化为简单的锁钥机制,并将构象冻结在 E*和 E 之间的中间状态。这些发现揭示了一个简单的框架,用于理解胰蛋白酶折叠的关键变构特性的分子基础。