Otto A, Birkenmeier G
Institute of Biochemistry, University of Leipzig, Germany.
J Chromatogr. 1993 Jul 30;644(1):25-33. doi: 10.1016/0021-9673(93)80116-p.
Poly(ethylene glycol) (PEG)-bound chelated metal ions partition preferentially into the top, PEG-rich, phase of a PEG-salt or PEG-dextran aqueous two-phase system. Extraction by this soluble affinity ligand of proteins is due to a selective interaction of the chelated metal ion with accessible histidine residues on the protein surface. Using Cu-iminodiacetate-PEG (Cu-IDA-PEG) the surface of lactate dehydrogenase (LDH) isoenzymes from different species was probed for the presence of metal chelate binding sites. It was demonstrated that the homotetramers (LDH-1)(H4) from rabbit, bovine and pig displayed weak binding to chelated copper whereas the M4-type isoenzymes (LDH-5) bound strongly to this ligand. The binding of the different heterotetramers increases as the number of M-type subunits increases. In contrast, the human isoenzymes are bound to chelated copper in a reversed sequence. The comparison of the affinity partitioning effect of Cu-IDA-PEG in PEG-salt and PEG-dextran systems revealed that the discriminatory effect of copper is promoted by high salt concentrations. Resolution of isoenzymes by multiple extraction using counter-current distribution provides valuable data on the partitioning of enzymes relative to that of the bulk proteins. The efficacy of metal chelate affinity partitioning for the purification of LDH from tissue samples by batchwise extraction was also demonstrated.
聚乙二醇(PEG)结合的螯合金属离子优先分配到PEG-盐或PEG-葡聚糖水两相体系的上层富含PEG的相中。通过这种可溶性亲和配体对蛋白质进行提取是由于螯合金属离子与蛋白质表面可及的组氨酸残基之间的选择性相互作用。使用亚氨基二乙酸铜-聚乙二醇(Cu-IDA-PEG)对来自不同物种的乳酸脱氢酶(LDH)同工酶表面进行金属螯合物结合位点的探测。结果表明,来自兔、牛和猪的同四聚体(LDH-1)(H4)与螯合铜的结合较弱,而M4型同工酶(LDH-5)与该配体的结合较强。不同异四聚体的结合随着M型亚基数量的增加而增加。相比之下,人类同工酶与螯合铜的结合顺序相反。对Cu-IDA-PEG在PEG-盐和PEG-葡聚糖体系中的亲和分配效应的比较表明,高盐浓度促进了铜的区分效应。通过逆流分配进行多次提取来分离同工酶,提供了有关酶相对于大量蛋白质的分配的有价值的数据。还证明了通过分批提取利用金属螯合亲和分配从组织样品中纯化LDH的功效。