Kravchuk Z I, Zhorov O V, Preĭgerzon V A, Zakharova N A, Shakhanina K L, Martsev S P
Biokhimiia. 1991 Oct;56(10):1907-15.
To localize essential epitopes of rabbit IgG, a series of proteolytic IgG fragments obtained by papain (Fab, Fc) or pepsin (pFc', F(ab')2) proteolysis have been prepared and their interaction with sheep antibodies against rabbit IgG has been studied. The data obtained suggest that essential immunoreactive epitopes of rabbit IgG are located in the CH2 domain and hinge region. This finding is in line with the results obtained by computing the antigenic sites of immunoglobulins. However, the deviation from the computed antigenic structure was deduced from the complete lack of immunoreactivity of the pFc fragment, it being a dimer of the terminal CH3 domain of the Fc fragment. The hinge region comparable in size with the dimensions of the epitope reveals high affinity binding to anti-IgG, thus testifying to the localization of the expressed epitope or its essential part in the hinge region. Proteolytic cleavage of this region leads to a significant decrease in the binding of the IgG fragment to anti-IgG. In addition to the CH2 domain and hinge region, a relatively low interaction of the antigen-binding antibody fragments with anti-IgG was found.
为了定位兔免疫球蛋白G(IgG)的关键表位,制备了一系列通过木瓜蛋白酶(Fab、Fc)或胃蛋白酶(pFc'、F(ab')2)蛋白水解获得的IgG蛋白水解片段,并研究了它们与抗兔IgG羊抗体的相互作用。所获得的数据表明,兔IgG的关键免疫反应性表位位于CH2结构域和铰链区。这一发现与通过计算免疫球蛋白抗原位点获得的结果一致。然而,由于pFc片段完全缺乏免疫反应性,推断其与计算出的抗原结构存在偏差,pFc片段是Fc片段末端CH3结构域的二聚体。与表位尺寸相当的铰链区显示出与抗IgG的高亲和力结合,从而证明表达的表位或其主要部分位于铰链区。该区域的蛋白水解切割导致IgG片段与抗IgG的结合显著减少。除了CH2结构域和铰链区外,还发现抗原结合抗体片段与抗IgG的相互作用相对较弱。