Institute of Chemical Biology and Fundamental Medicine, Siberian Division of Russian Academy of Sciences, Novosibirsk, Russia.
PLoS One. 2013;8(3):e51600. doi: 10.1371/journal.pone.0051600. Epub 2013 Mar 8.
IgGs from patients with multiple sclerosis and systemic lupus erythematosus (SLE) purified on MBP-Sepharose in contrast to canonical proteases hydrolyze effectively only myelin basic protein (MBP), but not many other tested proteins. Here we have shown for the first time that anti-MBP SLE IgGs hydrolyze nonspecific tri- and tetrapeptides with an extreme low efficiency and cannot effectively hydrolyze longer 20-mer nonspecific oligopeptides corresponding to antigenic determinants (AGDs) of HIV-1 integrase. At the same time, anti-MBP SLE IgGs efficiently hydrolyze oligopeptides corresponding to AGDs of MBP. All sites of IgG-mediated proteolysis of 21-and 25-mer encephalytogenic oligopeptides corresponding to two known AGDs of MBP were found by a combination of reverse-phase chromatography, TLC, and MALDI spectrometry. Several clustered major, moderate, and minor sites of cleavage were revealed in the case of 21- and 25-mer oligopeptides. The active sites of anti-MBP abzymes are localised on their light chains, while heavy chains are responsible for the affinity of protein substrates. Interactions of intact globular proteins with both light and heavy chains of abzymes provide high affinity to MBP and specificity of this protein hydrolysis. The affinity of anti-MBP abzymes for intact MBP is approximately 1000-fold higher than for the oligopeptides. The data suggest that all oligopeptides interact mainly with the light chains of different monoclonal abzymes of total pool of IgGs, which possesses a lower affinity for substrates, and therefore, depending on the oligopeptide sequences, their hydrolysis may be less specific than globular protein and can occur in several sites.
IgGs 从多发性硬化症和系统性红斑狼疮 (SLE) 患者中纯化,与经典蛋白酶相比,它们仅有效地水解髓鞘碱性蛋白 (MBP),而不是许多其他测试的蛋白质。在这里,我们首次表明,抗 MBP SLE IgGs 以极低的效率水解非特异性三肽和四肽,并且不能有效地水解对应于 HIV-1 整合酶抗原决定簇 (AGD) 的更长的 20 肽非特异性寡肽。同时,抗 MBP SLE IgGs 有效地水解对应于 MBP AGD 的寡肽。通过反相色谱、TLC 和 MALDI 光谱学的组合,发现了与 MBP 两个已知 AGD 相对应的 21-和 25-肽致脑炎寡肽的 IgG 介导的蛋白水解的所有位点。在 21-和 25-肽的情况下,揭示了几个簇的主要、中等和次要切割位点。抗 MBP 酶的活性位点位于其轻链上,而重链负责蛋白质底物的亲和力。完整球状蛋白与酶的轻链和重链的相互作用提供了对 MBP 的高亲和力和这种蛋白质水解的特异性。抗 MBP 酶对完整 MBP 的亲和力比寡肽高约 1000 倍。数据表明,所有寡肽主要与完整的 MBP 相互作用,与 abzyme 的轻链相互作用,这对底物的亲和力较低,因此,根据寡肽序列,它们的水解可能不如球状蛋白特异性,并且可以在几个位点发生。