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Structure-guided inhibitor design for human FAAH by interspecies active site conversion

机译:通过种间活性位点转化来设计人类FAAH的结构导向抑制剂

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摘要

The integral membrane enzyme fatty acid amide hydrolase (FAAH) hydrolyzes the endocannabinoid anandamide and related amidated signaling lipids. Genetic or pharmacological inactivation of FAAH produces analgesic, anxiolytic, and antiinflammatory phenotypes but not the undesirable side effects of direct cannabinoid receptor agonists, indicating that FAAH may be a promising therapeutic target. Structure-based inhibitor design has, however, been hampered by difficulties in expressing the human FAAH enzyme. Here, we address this problem by interconverting the active sites of rat and human FAAH using site-directed mutagenesis. The resulting humanized rat (h/r) FAAH protein exhibits the inhibitor sensitivity profiles of human FAAH but maintains the high-expression yield of the rat enzyme. We report a 2.75-Å crystal structure of h/rFAAH complexed with an inhibitor, N-phenyl-4-(quinolin-3-ylmethyl)piperidine-1-carboxamide (PF-750), that shows strong preference for human FAAH. This structure offers compelling insights to explain the species selectivity of FAAH inhibitors, which should guide future drug design programs.
机译:完整的膜酶脂肪酸酰胺水解酶(FAAH)水解内源性大麻素anandamide和相关的酰胺化信号脂质。 FAAH的遗传或药理失活会产生止痛,抗焦虑和抗炎的表型,但不会产生直接大麻素受体激动剂的不良副作用,这表明FAAH可能是有前途的治疗靶点。然而,基于结构的抑制剂设计由于表达人FAAH酶的困难而受到阻碍。在这里,我们通过使用定点诱变相互转换大鼠和人类FAAH的活性位点来解决此问题。所得的人源化大鼠(h / r)FAAH蛋白表现出人FAAH的抑制剂敏感性谱,但保持了大鼠酶的高表达产量。我们报道了与抑制剂N-苯基-4-(喹啉-3-基甲基)哌啶-1-羧酰胺(PF-750)结合的h / rFAAH的2.75-Å晶体结构,显示出对人FAAH的强烈偏好。这种结构提供了令人信服的见解来解释FAAH抑制剂的物种选择性,这将指导未来的药物设计方案。

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