Leibniz-Institut für Analytische Wissenschaften, ISAS, Dortmund, Germany.
Electrophoresis. 2011 Mar;32(6-7):772-81. doi: 10.1002/elps.201000529. Epub 2010 Dec 30.
IEF is known as a powerful electrophoretic separation technique for amphoteric molecules, in particular for proteins. The objective of the present work is to prove the suitability of IEF also for the separation of small, non-covalent metal species. Investigations are performed with copper-glutathione complexes, with the synthetic ligand ethylenediamine-N,N'-bis(o-hydroxyphenyl)acetic acid (EDDHA) and respective metal complexes (Fe, Ga, Al, Ni, Zn), and with the phytosiderophore 2'-deoxymugineic acid (DMA) and its ferric complex. It is shown that ethylenediamine-N,N'-bis(o-hydroxyphenyl)acetic acid and DMA species are stable during preparative scale IEF, whereas copper-glutathione dissociates considerably. It is also shown that preparative scale IEF can be applied successfully to isolate ferric DMA from real plant samples, and that multidimensional separations are possible by combining preparative scale IEF with subsequent HPLC-MS analysis. Focusing of free ligands and respective metal complexes with di- and trivalent metals results in different pIs, but CIEF is usually needed for a reliable estimation of pI values. Limitations of the proposed methods (preparative IEF and CIEF) and consequences of the results with respect to metal speciation in plants are discussed.
等电聚焦(IEF)是一种强大的两性分子电泳分离技术,特别是对于蛋白质。本工作的目的是证明 IEF 也适用于分离小的、非共价的金属物种。研究采用铜-谷胱甘肽配合物、合成配体乙二胺-N,N'-双(邻羟基苯)乙酸(EDDHA)及其相应的金属配合物(Fe、Ga、Al、Ni、Zn)、植物铁载体 2'-去氧麦根酸(DMA)及其铁配合物进行。结果表明,在制备规模的 IEF 过程中,乙二胺-N,N'-双(邻羟基苯)乙酸和 DMA 物种稳定,而铜-谷胱甘肽则会发生相当程度的解离。还表明,制备规模的 IEF 可成功地用于从实际植物样品中分离出铁 DMA,并且通过将制备规模的 IEF 与随后的 HPLC-MS 分析相结合,可以实现多维分离。二价和三价金属对游离配体和相应金属配合物的聚焦导致不同的等电点,但通常需要 CIEF 来可靠估计 pI 值。讨论了所提出的方法(制备IEF 和 CIEF)的局限性以及这些结果对植物中金属形态的影响。