首页> 外文期刊>ACS medicinal chemistry letters >T-3364366 Targets the Desaturase Domain of Delta-5 Desaturase with Nanomolar Potency and a Multihour Residence Time
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T-3364366 Targets the Desaturase Domain of Delta-5 Desaturase with Nanomolar Potency and a Multihour Residence Time

机译:T-3364366以纳摩尔浓度和数小时的停留时间靶向Delta-5去饱和酶的去饱和酶结构域

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Delta-5 desaturase (D5D) catalyzes the conversion from dihomo-gamma linoleic acid (DGLA) to arachidonic acid (AA). DGLA and AA are common precursors of anti- and pro-inflammatory eicosanoids, respectively, making D5D an attractive drug target for inflammatory-related diseases. Despite several reports on D5D inhibitors, their biochemical mechanisms of action (MOAs) remain poorly understood, primarily due to the difficulty in performing quantitative enzymatic analysis. Herein, we report a radio-ligand binding assay to overcome this challenge and characterized T-3364366, a thienopyrimidinone D5D inhibitor, by use of the assay. T-3364366 is a reversible, slow-binding inhibitor with a dissociation half-life in excess of 2.0 h. The long residence time was confirmed in cellular washout assays. Domain swapping experiments between D5D and D6D support [H-3]T-3364366 binding to the desaturase domain of D5D. The present study is the first to demonstrate biochemical MOA of desaturase inhibitors, providing important insight into drug discovery of desaturase enzymes.
机译:Delta-5去饱和酶(D5D)催化从二高-γ-亚油酸(DGLA)到花生四烯酸(AA)的转化。 DGLA和AA分别是抗炎和类炎性类花生酸的常见前体,使D5D成为炎性相关疾病的诱人药物靶标。尽管有几篇有关D5D抑制剂的报道,但对它们的生化作用机理(MOA)的了解仍然很少,这主要是由于难以进行定量酶促分析。本文中,我们报告了一种放射性配体结合测定法,以克服这一挑战,并通过使用该测定法表征了噻吩并嘧啶酮D5D抑制剂T-3364366。 T-3364366是可逆的,缓慢结合的抑制剂,解离半衰期超过2.0小时。在细胞洗脱试验中证实了长停留时间。 D5D和D6D之间的域交换实验支持[H-3] T-3364366与D5D的去饱和酶域结合。本研究是第一个证明去饱和酶抑制剂的生化MOA的方法,它为去饱和酶的药物发现提供了重要的见识。

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