Nissim A, Jouvin M H, Eshhar Z
Department of Chemical Immunology, Weizmann Institute of Science, Rehovot, Israel.
EMBO J. 1991 Jan;10(1):101-7. doi: 10.1002/j.1460-2075.1991.tb07925.x.
Identification of the precise region(s) on the IgE molecule that take part in the binding of IgE to its high affinity receptor (Fc epsilon RI) may lead to the design of IgE analogues able to block the allergic response. To localize the Fc epsilon RI-binding domain of mouse IgE, we attempted to confer on human IgE, which normally does not bind to the rodent receptor, the ability to bind to the rat Fc epsilon RI. Employing exon shuffling, we have expressed chimeric epsilon-heavy chain genes composed of a mouse (4-hydroxy-3-nitrophenyl)acetic acid (NP)-binding VH domain, and human C epsilon in which various domains were replaced by their murine counterparts. This has enabled us to test the Fc epsilon RI-binding of each mouse IgE domain while maintaining the overall conformation of the molecule. All of the chimeric IgE molecules which contain the murine C epsilon 3, bound equally to both the rodent and human receptor, as well as to monoclonal antibodies recognizing a site on IgE which is identical or very close to the Fc epsilon RI binding site. Deletion of the second constant region domain did not impair either the binding capacity of the mutated IgE or its ability to mediate mast cell degradation. These results assign the third epsilon domain of IgE as the principal region involved in the interaction with the Fc epsilon RI.
确定免疫球蛋白E(IgE)分子上参与IgE与其高亲和力受体(FcεRI)结合的精确区域,可能会促使设计出能够阻断过敏反应的IgE类似物。为了定位小鼠IgE的FcεRI结合域,我们试图赋予通常不与啮齿动物受体结合的人IgE与大鼠FcεRI结合的能力。利用外显子改组技术,我们表达了嵌合的ε重链基因,该基因由小鼠(4-羟基-3-硝基苯基)乙酸(NP)结合性VH结构域和人Cε组成,其中各个结构域被其鼠源对应物所取代。这使我们能够在保持分子整体构象的同时,测试每个小鼠IgE结构域与FcεRI的结合情况。所有包含鼠源Cε3的嵌合IgE分子,与啮齿动物和人类受体的结合能力相同,并且与识别IgE上一个与FcεRI结合位点相同或非常接近的位点的单克隆抗体的结合能力也相同。删除第二个恒定区结构域既不损害突变型IgE的结合能力,也不损害其介导肥大细胞降解的能力。这些结果表明,IgE的第三个ε结构域是参与与FcεRI相互作用的主要区域。