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Comparison of the Sensitivities of WaterLOGSY and Saturation Transfer Difference NMR Experiments

机译:WaterLOGSY和饱和转移差NMR实验灵敏度的比较

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摘要

The WaterLOGSY (WL) and Saturation Transfer Difference (STD) NMR experiments have proven to be extremely useful techniques to characterize interactions between small molecules and large biomolecules. In this work we compare the relative sensitivities of WL and STD NMR using 3 experimental systems: ketoprofen (KET)-bovine serum albumin (BSA), tert-butyl hydroquinone (TBHQ)-hemagglutinin (HA), and chloramphenicol (CAM)-ribosome (70S). In all cases we find that WL is more sensitive than STD for a given experimental time with the ratios ranging from 3.2 for KET-BSA to 16 for TBHQ-HA and CAM-70S. We attribute the increased sensitivity of WL to be due to simultaneous saturation of multiple sources of cross correlation, including direct NOEs of 1H of water and exchangeable groups and indirect NOEs of 1H-C groups. We suggest that the outstanding sensitivity of WL make it ideally suited for drug screening efforts targeting very large biomolecules at relatively low concentrations.
机译:实践证明,WaterLOGSY(WL)和饱和转移差异(STD)NMR实验是表征小分子与大生物分子之间相互作用的极其有用的技术。在这项工作中,我们使用三种实验系统比较了WL和STD NMR的相对灵敏度:酮洛芬(KET)-牛血清白蛋白(BSA),叔丁基对苯二酚(TBHQ)-血凝素(HA)和氯霉素(CAM)-核糖体(70S)。在所有情况下,我们发现在给定的实验时间内,WL比STD敏感,比率从KET-BSA的3.2到TBHQ-HA和CAM-70S的16范围不等。我们将WL敏感性提高归因于多个互相关源同时饱和,包括水和可交换基团的 1 H的直接NOE和 1 的间接NOE。 HC组。我们认为WL的出色灵敏度使其非常适合针对相对低浓度的非常大生物分子的药物筛选工作。

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