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Comparative analyses of different surfactants on matrix-assisted laser desorption/ionization mass spectrometry peptide analysis

机译:基质辅助激光解吸/电离质谱肽分析中不同表面活性剂的比较分析

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摘要

Matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) has been extensively used for proteomics and peptidomics analysis. Nevertheless, these analyses, when focused on low molecular mass proteins, show some limitation due to background interference from surfactant ions. Surfactants are routinely used as a solubilizing or denaturing agents for proteins and peptides. In this report, an evaluation and further comparison of the effects of an ionic surfactant, sodium dodecyl sulfate (SDS), and a non-ionic surfactant, tergitol, on MALDI-MS analyses of the amphipathic peptides, angiotensin and bradykinin, were carried out. At concentrations ≥ 10 mmol L~(-1), SDS deteriorates the MALDI spectral quality by reducing the signal and intensity of the analyte ions. In particular, it affects the hydrophobic peptide where the signal of surfactant-interfering ions suppresses the analyte ion signal. Whereas, the non-ionic surfactant, tergitol, improves the MALDI-MS analysis of peptide mixtures or hydrophobic peptides by reducing interference from the surfactant itself in positive ion mode analysis. Three-dimensional molecular modeling of two different peptides in complex to tergitol NP-40 and SDS were conducted in order to explain the molecular effects of both agents. In summary, while SDS must be removed from the sample solution to avoid interference of ions from SDS and suppression of analyte ion signal, tergitol at low concentrations may be used as an additive with sample solution for MALDI-MS analysis of peptides. Finally, molecular modeling analyses associated with docking were used in order to explain experimental biochemical data.
机译:基质辅助激光解吸/电离质谱(MALDI-MS)已被广泛用于蛋白质组学和肽组学分析。然而,这些分析集中在低分子量蛋白质上时,由于表面活性剂离子的背景干扰而显示出一定的局限性。表面活性剂通常用作蛋白质和肽的增溶剂或变性剂。在本报告中,对两性肽,血管紧张素和缓激肽的MALDI-MS分析进行了离子表面活性剂十二烷基硫酸钠(SDS)和非离子表面活性剂Tergitol的评价并进行了进一步比较。 。在浓度≥10 mmol L〜(-1)时,SDS会通过降低分析物离子的信号和强度而降低MALDI光谱质量。特别是,它会影响疏水性肽,其中表面活性剂干扰离子的信号会抑制分析物离子信号。而非离子表面活性剂,tergitol,可通过减少表面活性​​剂本身在正离子模式分析中的干扰来改善肽混合物或疏水肽的MALDI-MS分析。为了解释这两种药物的分子作用,对两种不同的肽与Tergitol NP-40和SDS形成了复杂的三维分子模型。总而言之,尽管必须从样品溶液中除去SDS以避免SDS中离子的干扰和分析物离子信号的抑制,但低浓度的Tergitol可以作为样品溶液的添加剂用于MALDI-MS分析多肽。最后,使用与对接相关的分子模型分析来解释实验生化数据。

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