Duša Filip, Moravcová Dana, Šlais Karel
Czech Academy of Sciences, Institute of Analytical Chemistry, Veveří 97, Brno, 60200, Czech Republic.
Czech Academy of Sciences, Institute of Analytical Chemistry, Veveří 97, Brno, 60200, Czech Republic.
Anal Chim Acta. 2019 Oct 17;1076:144-153. doi: 10.1016/j.aca.2019.05.010. Epub 2019 May 8.
Low-molecular-mass isoelectric point (pI) markers are a reasonable alternative to commonly used peptide and protein pI markers in the field of isoelectric focusing. We present a comparative study dealing with characterization of 44 nitrophenol-based compounds synthesized by the Mannich reaction which pI values cover a pH range from 3.2 to 10.4. The values of pIs of all the presented nitrophenol-based compounds were precisely determined by capillary isoelectric focusing technique (cIEF) when a standard deviation of measurement reached a value of a few hundredths of a pH unit (n ≥ 3). Differences have been found between in silico analysis of acid-base properties of the investigated compounds and the experimental cIEF data especially at the basic pH region. The data from the acidic pH range showed better correlation between these methods. Only three compounds were excluded from the group of pI markers because they contained impurities originating from the synthesis or long-term storage. Based on the presented results we identified 41 nitrophenol-based pI markers (NPIMs) which can fulfill requirements of the most applications in a field of isoelectric focusing analyses.
低分子量等电点(pI)标记物是等电聚焦领域中常用肽和蛋白质pI标记物的合理替代品。我们开展了一项比较研究,涉及对通过曼尼希反应合成的44种硝基苯酚类化合物的表征,其pI值涵盖3.2至10.4的pH范围。当测量的标准偏差达到pH单位的百分之几时(n≥3),通过毛细管等电聚焦技术(cIEF)精确测定了所有呈现的硝基苯酚类化合物的pI值。在所研究化合物的酸碱性质的计算机分析与实验cIEF数据之间发现了差异,尤其是在碱性pH区域。酸性pH范围内的数据显示这些方法之间具有更好的相关性。只有三种化合物被排除在pI标记物组之外,因为它们含有合成或长期储存产生的杂质。基于所呈现的结果,我们鉴定出41种硝基苯酚类pI标记物(NPIMs),它们可以满足等电聚焦分析领域中大多数应用的要求。