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Biochemical and pharmacological characterization of human α/β-hydrolase domain containing 6 (ABHD6) and 12 (ABHD12)

机译:包含6(ABHD6)和12(ABHD12)的人α/β水解酶结构域的生化和药理学表征

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摘要

In the central nervous system, three enzymes belonging to the serine hydrolase family are thought to regulate the life time of the endocannabinoid 2-arachidonoylglycerol (C20:4) (2-AG). From these, monoacylglycerol lipase (MAGL) is well characterized and, on a quantitative basis, is the main 2-AG hydrolase. The postgenomic proteins α/β-hydrolase domain containing (ABHD)6 and ABHD12 remain poorly characterized. By applying a sensitive fluorescent glycerol assay, we delineate the substrate preferences of human ABHD6 and ABHD12 in comparison with MAGL. We show that the three hydrolases are genuine MAG lipases; medium-chain saturated MAGs were the best substrates for hABHD6 and hMAGL, whereas hABHD12 preferred the 1 (3)- and 2-isomers of arachidonoylglycerol. Site-directed mutagenesis of the amino acid residues forming the postulated catalytic triad (ABHD6: S148-D278-H306, ABHD12: S246-D333-H372) abolished enzymatic activity as well as labeling with the active site serine-directed fluorophosphonate probe TAMRA-FP. However, the role of D278 and H306 as residues of the catalytic core of ABHD6 could not be verified because none of the mutants showed detectable expression. Inhibitor profiling revealed striking potency differences between hABHD6 and hABHD12, a finding that, when combined with the substrate profiling data, should facilitate further efforts toward the design of potent and selective inhibitors, especially those targeting hABHD12, which currently lacks such inhibitors.
机译:在中枢神经系统中,丝氨酸水解酶家族的三种酶被认为可以调节内源性大麻素2-花生四烯酸甘油酯(C20:4)(2-AG)的寿命。由此可见,单酰基甘油脂肪酶(MAGL)得到了很好的表征,并且在定量基础上是主要的2-AG水解酶。后基因组蛋白包含α/β水解酶结构域(ABHD)6和ABHD12仍然很差。通过应用敏感的荧光甘油测定,我们描述了与MAGL相比人ABHD6和ABHD12的底物偏好。我们显示这三种水解酶是真正的MAG脂肪酶。中链饱和MAG是hABHD6和hMAGL的最佳底物,而hABHD12则优先选择花生四烯酸甘油酯的1(3)和2异构体。形成假定的催化三联体(ABHD6:S148-D278-H306,ABHD12:S246-D333-H372)的氨基酸残基的定点诱变消除了酶活性,并用活性位点丝氨酸定向的氟代磷酸酯探针TAMRA-FP标记。但是,D278和H306作为ABHD6催化核心残基的作用无法得到证实,因为所有突变体均未显示可检测的表达。抑制剂分析揭示了hABHD6和hABHD12之间惊人的效能差异,这一发现与底物分析数据结合后,应有助于进一步设计有效和选择性抑制剂,尤其是针对目前缺乏此类抑制剂的靶向hABHD12的抑制剂。

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