Saint-Remy J M, Magnusson C G, Masson P L
J Immunol. 1983 Mar;130(3):1341-4.
Activation of the classical pathway of human complement by monoclonal IgE from patient DES was demonstrated by using IgE(DES) coupled to latex particles. This material depleted human serum of C1 and C4 hemolytic activities. In addition, C3bi was deposited in a calcium-dependent way onto the insolubilized IgE as shown by the agglutination of latex by conglutinin. The alternative pathway was also activated. These anticomplementary activities were dose and time dependent. Moreover, we confirmed that another monoclonal IgE, IgE(PS), activated the alternative pathway exclusively. Particular attention was paid to exclude contamination by other immunoglobulins or C-reactive protein, generation of artifacts due to the chemical coupling, and the presence of proteolytic enzymes in the IgE(DES) preparation. Moreover, evidence is also presented against the involvement of IgG or IgM anti-IgE autoantibodies that could activate the classical pathway after their binding to insolubilized IgE(DES). Although one cannot exclude the possibility that IgE(DES) or IgE(PS) are abnormal proteins, these findings suggest the existence of an isotypic or allotypic variation of IgE.
通过使用偶联到乳胶颗粒上的IgE(DES),证实了来自患者DES的单克隆IgE激活人补体经典途径。这种物质消耗了人血清中的C1和C4溶血活性。此外,如通过胶固素使乳胶凝集所示,C3bi以钙依赖的方式沉积在不溶性IgE上。替代途径也被激活。这些抗补体活性是剂量和时间依赖性的。此外,我们证实另一种单克隆IgE,IgE(PS),仅激活替代途径。特别注意排除其他免疫球蛋白或C反应蛋白的污染、化学偶联产生的假象以及IgE(DES)制剂中蛋白水解酶的存在。此外,也提供了证据反对IgG或IgM抗IgE自身抗体的参与,这些自身抗体在与不溶性IgE(DES)结合后可激活经典途径。尽管不能排除IgE(DES)或IgE(PS)是异常蛋白的可能性,但这些发现提示IgE存在同种型或同种异型变异。