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首页> 外文期刊>Analytical and bioanalytical chemistry >Screening Dyrk1A inhibitors by MALDI-QqQ mass spectrometry: systematic comparison to established radiometric, luminescence, and LC-UV-MS assays
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Screening Dyrk1A inhibitors by MALDI-QqQ mass spectrometry: systematic comparison to established radiometric, luminescence, and LC-UV-MS assays

机译:通过MALDI-QqQ质谱法筛选Dyrk1A抑制剂:与已建立的放射分析,发光分析和LC-UV-MS分析的系统比较

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摘要

Enzyme-catalyzed reactions play key roles in disease pathology, thus making them relevant subjects of therapeutic inhibitor screening experiments. Matrix-assisted laser desorption/ionization (MALDI) assays have been demonstrated to be able to replace established screening approaches. They offer increased sample throughput, but care must be taken to avoid instrumental bias from differences in ionization efficiencies. We compared a MALDI-triple-quadrupole(QqQ) method for the Dyrk1A peptide substrate woodtide to LC-MS, liquid chromatography with ultraviolet detection(LC-UV), luminescence, and radiometric assays. MALDI measurements were performed on a MALDI-QqQ instrument in the multiple-reaction monitoring mode. Different MALDI conditions were investigated to address whether matrix type, sample support, and MRM- or SIM-based detection conditions can be used to accommodate the molar responses of substrate peptide and its phosphorylated form. UV detection served as a reference method. The impact of MALDI matrix on IC_(50) values was small, even considering that matrix preparations were used that are known to alleviate response differences. IC(50) values determined by MALDI were ca. 2-fold lower than those determined by LC-UV. Although MALDI generated lower ion yields for the phosphorylated peptide than for the peptide substrate, we found that a correction of compound potencies was readily possible using correction factors based on unbiased LC-UVresults. A thorough method development delivered a robust assay with excellent performance(Z' > 0.91) that was close to that seen for LC-UV.
机译:酶催化的反应在疾病病理中起关键作用,因此使其成为治疗性抑制剂筛选实验的相关主题。基质辅助激光解吸/电离(MALDI)分析已被证明能够取代已建立的筛选方法。它们提高了样品通量,但必须注意避免电离效率差异带来的仪器偏差。我们将Dyrk1A肽底物Woodtide的MALDI-三重四极杆(QqQ)方法与LC-MS,具有紫外检测(LC-UV)的液相色谱,发光和放射分析方法进行了比较。 MALDI测量是在MALDI-QqQ仪器上以多反应监测模式进行的。研究了不同的MALDI条件,以解决是否可以使用基质类型,样品支持物以及基于MRM或SIM的检测条件来适应底物肽及其磷酸化形式的摩尔反应。紫外线检测用作参考方法。即使考虑使用已知的缓解反应差异的基质制剂,MALDI基质对IC_(50)值的影响也很小。由MALDI确定的IC(50)值约为比LC-UV测定的结果低2倍。尽管MALDI生成的磷酸化肽的离子收率低于肽底物,但我们发现使用基于无偏LC-UV结果的校正因子可以轻松校正化合物的效价。彻底的方法开发提供了一种性能卓越的稳定分析方法(Z'> 0.91),接近于LC-UV。

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