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在优化甲氨蝶呤靶向免疫治疗(MASPIT)中作为固定锚定部分的甲氨蝶呤替代试剂:合成与生物学评价

Alternative reagents for methotrexate as immobilizing anchor moieties in the optimization of MASPIT: synthesis and biological evaluation.

作者信息

De Clercq Dries J H, Risseeuw Martijn D P, Karalic Izet, De Smet Anne-Sophie, Defever Dieter, Tavernier Jan, Lievens Sam, Van Calenbergh Serge

机构信息

Laboratory for Medicinal Chemistry, Faculty of Pharmaceutical Sciences, Ghent University, Ottergemsesteenweg 460, 9000 Gent (Belgium).

出版信息

Chembiochem. 2015 Mar 23;16(5):834-43. doi: 10.1002/cbic.201402702. Epub 2015 Feb 16.

Abstract

We report the evaluation of two alternative chemical dimerizer approaches aimed at increasing the sensitivity of MASPIT, a three-hybrid system that enables small-molecule target protein profiling in intact human cells. To circumvent the potential limitations related to the binding of methotrexate (MTX) to endogenous human dihydrofolate reductase (DHFR), we explored trimethoprim (TMP) as an alternative prokaryote-specific DHFR ligand. MASPIT evaluation of TMP fusion compounds with tamoxifen, reversine, and simvastatin as model baits, resulted in dose-response curves shifted towards lower EC50 values than those of their MTX congeners. Furthermore, a scalable azido-TMP reagent was synthesized that displayed a similar improvement in sensitivity, possibly owing to increased membrane permeability relative to the MTX anchor. Applying the SNAP-tag approach to introduce a covalent bond into the system, on the other hand, produced an inferior readout than in the MTX- or TMP-tag based assay.

摘要

我们报告了对两种替代化学二聚体方法的评估,旨在提高MASPIT的灵敏度,MASPIT是一种三杂交系统,能够在完整的人类细胞中对小分子靶蛋白进行分析。为了规避与甲氨蝶呤(MTX)与内源性人类二氢叶酸还原酶(DHFR)结合相关的潜在限制,我们探索了甲氧苄啶(TMP)作为一种替代的原核生物特异性DHFR配体。以他莫昔芬、瑞弗西丁和辛伐他汀为模型诱饵对TMP融合化合物进行MASPIT评估,结果显示剂量反应曲线向比其MTX同类物更低的EC50值偏移。此外,合成了一种可扩展的叠氮基-TMP试剂,其灵敏度也有类似提高,这可能是由于相对于MTX锚定物,膜通透性增加。另一方面,应用SNAP标签方法在系统中引入共价键,其读数比基于MTX或TMP标签的检测方法差。

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