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Bicyclic gamma-amino acids as inhibitors of gamma-aminobutyrate aminotransferase

机译:双环γ-氨基酸作为γ-氨基丁酯氨基转移酶的抑制剂

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The gamma-aminobutyrate (GABA)-degradative enzyme GABA aminotransferase (GABA-AT) is regarded as an attractive target to control GABA levels in the central nervous system: this has important implications in the treatment of several neurological disorders and drug dependencies. We have investigated the ability of newly synthesized compounds to act as GABA-AT inhibitors. These compounds have a unique bicyclic structure: the carbocyclic ring bears the GABA skeleton, while the fused 3-Br-isoxazoline ring contains an electrophilic warhead susceptible of nucleophilic attack by an active site residue of the target enzyme. Out of the four compounds tested, only the one named (+)-3 was found to significantly inhibit mammalian GABA-AT in vitro. Docking studies, performed on the available structures of GABA-AT, support the experimental findings: out of the four tested compounds, only (+)-3 suitably orients the electrophilic 3-Br-isoxazoline warhead towards the active site nucleophilic residue Lys329, thereby explaining the irreversible inhibition of GABA-AT observed experimentally.
机译:γ-氨基丁酸酯(GABA)-DEGRAPED酶GABA氨基转移酶(GABA-AT)被认为是对中枢神经系统中GABA水平的吸引力的靶标:这对治疗几种神经系统疾病和药物依赖性具有重要意义。我们研究了新合成的化合物作为GABA抑制剂的能力。这些化合物具有独特的双环结构:碳环环承受GABA骨架,而熔融3-BR-异恶唑啉环含有易受靶酶的活性位点残留物的亲核侵蚀的亲电子弹头。在测试的四种化合物中,发现仅发现(+) - 3的一个(+) - 3在体外显着抑制哺乳动物GABA。对接研究,对GABA-AT的可用结构进行,支持实验结果:从四种测试的化合物中,仅(+) - 3适当地朝向活性位点亲核残留物Lys329朝向活性位点的亲电子3-Br-Isoxazoline弹头。解释实验性观察到GABA-in观察的不可逆抑制。

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