Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
J Mol Biol. 2010 Jul 23;400(4):743-54. doi: 10.1016/j.jmb.2010.05.034. Epub 2010 May 21.
The endocannabinoid system regulates a wide range of physiological processes including pain, inflammation, and cognitive/emotional states. URB597 is one of the best characterized covalent inhibitors of the endocannabinoid-degrading enzyme fatty acid amide hydrolase (FAAH). Here, we report the structure of the FAAH-URB597 complex at 2.3 A resolution. The structure provides insights into mechanistic details of enzyme inactivation and experimental evidence of a previously uncharacterized active site water molecule that likely is involved in substrate deacylation. This water molecule is part of an extensive hydrogen-bonding network and is coordinated indirectly to residues lining the cytosolic port of the enzyme. In order to corroborate our hypothesis concerning the role of this water molecule in FAAH's catalytic mechanism, we determined the structure of FAAH conjugated to a urea-based inhibitor, PF-3845, to a higher resolution (2.4 A) than previously reported. The higher-resolution structure confirms the presence of the water molecule in a virtually identical location in the active site. Examination of the structures of serine hydrolases that are non-homologous to FAAH, such as elastase, trypsin, or chymotrypsin, shows a similarly positioned hydrolytic water molecule and suggests a functional convergence between the amidase signature enzymes and serine proteases.
内源性大麻素系统调节广泛的生理过程,包括疼痛、炎症和认知/情绪状态。URB597 是内源性大麻素降解酶脂肪酸酰胺水解酶 (FAAH) 的最佳特征之一的共价抑制剂。在这里,我们报告了 FAAH-URB597 复合物在 2.3Å分辨率下的结构。该结构提供了酶失活机制细节的深入了解,并提供了实验证据证明存在以前未表征的活性位点水分子,该水分子可能参与底物脱酰基。这个水分子是广泛氢键网络的一部分,并间接与排列在酶胞质腔入口的残基配位。为了证实我们关于该水分子在 FAAH 催化机制中的作用的假设,我们确定了 FAAH 与基于脲的抑制剂 PF-3845 缀合的结构,其分辨率(2.4Å)高于先前报道的分辨率。更高分辨率的结构证实了活性位点中存在水分子,其位置几乎相同。检查与 FAAH 没有同源性的丝氨酸水解酶,如弹性蛋白酶、胰蛋白酶或糜蛋白酶的结构,显示出位置相似的水解水分子,并表明酰胺酶特征酶和丝氨酸蛋白酶之间存在功能趋同。