CNRS Laboratoire de Bioénergétique et Ingénierie des Protéines, UPR 9036, Institut de Microbiologie de la Méditerranée, Aix-Marseille Universités, Marseille, France.
Biochemistry. 2010 Mar 16;49(10):2140-9. doi: 10.1021/bi901918f.
The opening of the lid that controls the access to the active site of human pancreatic lipase (HPL) was measured from the magnetic interaction between two spin labels grafted on this enzyme. One spin label was introduced at a rigid position in HPL where an accessible cysteine residue (C181) naturally occurs. A second spin label was covalently bound to the mobile lid after introducing a cysteine residue at position 249 by site-directed mutagenesis. Double electron-electron resonance (DEER) experiments allowed the estimation of a distance of 19 +/- 2 A between the spin labels when bilabeled HPL was alone in a frozen solution, i.e., with the lid in the closed conformation. A magnetic interaction was however detected by continuous wave EPR experiments, suggesting that a fraction of bilabeled HPL contained spin labels separated by a shorter distance. These results could be interpreted by the presence of two conformational subensembles for the spin label lateral chain at position 249 when the lid was closed. The existence of these conformational subensembles was revealed by molecular dynamics experiments and confirmed by the simulation of the EPR spectrum. When the lid opening was induced by the addition of bile salts and colipase, a larger distance of 43 +/- 2 A between the two spin labels was estimated from DEER experiments. The distances measured between the spin labels grafted at positions 181 and 249 were in good agreement with those estimated from the known X-ray structures of HPL in the closed and open conformations, but for the first time, the amplitude of the lid opening was measured in solution or in a frozen solution in the presence of amphiphiles.
从两个自旋标记物在该酶上的磁相互作用测量了控制人胰腺脂肪酶 (HPL) 活性部位进入的盖子的开启。一个自旋标记物被引入 HPL 中一个刚性位置,该位置自然存在可及的半胱氨酸残基 (C181)。第二个自旋标记物通过定点突变在位置 249 引入半胱氨酸残基后共价结合到可移动的盖子上。双电子-电子共振 (DEER) 实验允许在单独的冷冻溶液中(即盖子处于关闭构象时)估算两个自旋标记物之间的距离为 19 +/- 2 A。然而,连续波 EPR 实验检测到磁相互作用,表明一部分双标记 HPL 包含通过较短距离分离的自旋标记物。当盖子关闭时,位置 249 处的自旋标记物侧链存在两个构象亚基,这些结果可以通过这种情况来解释。分子动力学实验揭示了这些构象亚基的存在,并通过 EPR 光谱的模拟得到了证实。当通过添加胆汁盐和辅脂酶诱导盖子打开时,从 DEER 实验估计两个自旋标记物之间的距离为 43 +/- 2 A。在位置 181 和 249 处接枝的自旋标记物之间测量的距离与 HPL 在封闭和开放构象下的已知 X 射线结构中估计的距离非常吻合,但这是第一次在存在两亲物的溶液或冷冻溶液中测量盖子的打开幅度。