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Proteoliposome-based capillary electrophoresis for screening membrane protein inhibitors

机译:基于蛋白脂质体的毛细管电泳用于筛选膜蛋白抑制剂

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A method for screening of monoamine oxidase (MAO) inhibitor was carried out using capillary electrophoresis (CE) based on the interaction of MAO and its substrate kynuramine (Kyn). Bioactive proteoliposome was reconstituted by liposome and MAO and then was applied as the pseudostationary phase (PSP) of CE to mimic the interaction between the enzyme and its substrate. N-prolmrgyl-R-2-heptylamine (R-2-HPA) and rasagiline [N-propargyl-1-(R)- aminoindan], which are two kinds of MAO inhibitors, were added into the running buffers containing proteoliposome. The results showed that the relative migration time ratio (RMTR ×10 ~(-1)) values of Kyn were enhanced from 8.88 to 9.31 with an increase of the concentrations of rasagiline from 10 ~(-6) to 1 mM. However, the RMTR values of Kyn were enhanced from 8.83 to 9.14 with an increase of the concentrations of R-2-HPA from 10 ~(-6) to 1 mM. The RMTR value of Kyn in the presence of rasagiline was larger than that in the presence of R-2-HPA when rasagiline and R-2-HPA were at the same concentration. The results indicated that the interaction between Kyn and MAO was weakened with the increase of the inhibitors. In addition, the results of offline incubation showed that the inhibitions of rasagiline were 100.0, 72.1, 51.8 and 5.4% at the concentration of 1, 10 ~(-2), 10 ~(-4) and 10 ~(-6) mM; moreover, the inhibitions of R-2-HPA were 70.0, 44.9, 4.1 and 0.9% at the concentrations of 1, 10 ~(-2), 10 ~(-4) and 10 ~(-6)-6 mM. The inhibition efficiency of rasagiline was stronger than that of R-2-HPA at the same concentration. Additionally, the interaction between Kyn and liposome was also investigated. This newly developed method might provide a potential tool for screening MAO inhibitor.
机译:基于毛细管电泳(CE),基于MAO与其底物kyururamine(Kyn)的相互作用,进行了单胺氧化酶(MAO)抑制剂的筛选方法。通过脂质体和MAO重建生物活性蛋白脂质体,然后将其用作CE的伪平稳相(PSP),以模拟酶及其底物之间的相互作用。将两种MAO抑制剂N-炔丙基-R-2-庚胺(R-2-HPA)和雷沙吉兰[N-炔丙基-1-(R)-氨基茚满]加入含有脂质体的运行缓冲液中。结果表明,随着雷沙吉兰浓度从10〜(-6)增加到1 mM,Kyn的相对迁移时间比(RMTR×10〜(-1))值从8.88增加到9.31。然而,随着R-2-HPA的浓度从10〜(-6)增加到1 mM,Kyn的RMTR值从8.83增加到9.14。当雷沙吉兰和R-2-HPA浓度相同时,雷沙吉兰存在时Kyn的RMTR值大于R-2-HPA存在时的Kyn。结果表明,随着抑制剂的增加,Kyn与MAO之间的相互作用减弱。此外,离线温育的结果表明,在1、10〜(-2),10〜(-4)和10〜(-6)mM的浓度下,雷沙吉兰的抑制率分别为100.0、72.1、51.8和5.4%。 ;此外,在1、10〜(-2),10〜(-4)和10〜(-6)-6 mM的浓度下,R-2-HPA的抑制作用分别为70.0、44.9、4.1和0.9%。在相同浓度下,雷沙吉兰的抑制作用要强于R-2-HPA。另外,还研究了Kyn与脂质体之间的相互作用。这种新开发的方法可能为筛选MAO抑制剂提供潜在的工具。

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