Richards M L, Marcelletti J F, Katz D H
Division of Immunology, Medical Biology Institute, La Jolla, California 92037.
J Exp Med. 1988 Aug 1;168(2):571-87. doi: 10.1084/jem.168.2.571.
Murine monoclonal IgE interacts with B cells of BALB/c mouse spleen with greater efficiency in the presence of its specific antigen. Complexes of anti-DNP IgE and DNP-OVA not only resist elution from B lymphocytes by acid but have a substantially longer dissociation half-time when compared with monomeric IgE (440 vs. 8 min, respectively). Further, these IgE-antigen complexes induce Fc epsilon R expression in lymphoid cells more efficiently than IgE alone. Maximum levels of B cell Fc epsilon R were observed after a 24 h incubation with 1 microgram/ml IgE in the presence of 1 microgram/ml DNP-OVA, while 30 micrograms/ml monomeric IgE was needed to elicit a similar increase of Fc epsilon R expression. Most importantly, overnight incubation of B cell-enriched BALB/c spleen cells with IgE-antigen complexes resulted in an augmented membrane expression of class II MHC antigens. B cell surface expression of both I-A and I-E antigens responded to a comparable level after incubation with IgE-antigen complexes but did not occur in response to either IgE or antigen alone. The enhanced sIa expression occurred in parallel to IgE-antigen concentrations that gave rise to Fc epsilon R hyperexpression. Moreover, double staining for Fc epsilon R and surface Ia antigen shows that B cells exhibiting the highest density of Fc epsilon R also demonstrated the most surface I-A, suggesting that B lymphocytes are autonomous in their response to IgE-antigen complexes. Changes in class I MHC or sIgM were not observed after overnight incubation with IgE and antigen. These results demonstrate the importance of IgE-antigen complexes for intercellular signaling and further suggest that the IgE system plays a broader role in immune response than it has generally been credited.
在存在其特异性抗原的情况下,鼠单克隆IgE与BALB/c小鼠脾脏的B细胞相互作用的效率更高。抗DNP IgE和DNP-OVA的复合物不仅能抵抗酸从B淋巴细胞上洗脱,而且与单体IgE相比,其解离半衰期显著更长(分别为440分钟和8分钟)。此外,这些IgE-抗原复合物比单独的IgE更有效地诱导淋巴细胞表达FcεR。在1微克/毫升DNP-OVA存在下,用1微克/毫升IgE孵育24小时后,观察到B细胞FcεR的最高水平,而需要30微克/毫升单体IgE才能引起类似的FcεR表达增加。最重要的是,用IgE-抗原复合物对富含B细胞的BALB/c脾细胞进行过夜孵育,导致II类MHC抗原的膜表达增加。用IgE-抗原复合物孵育后,I-A和I-E抗原的B细胞表面表达反应达到相当水平,但单独用IgE或抗原孵育则不会出现这种情况。sIa表达的增强与引起FcεR高表达的IgE-抗原浓度平行发生。此外,对FcεR和表面Ia抗原的双重染色表明,FcεR密度最高的B细胞也表现出最多的表面I-A,这表明B淋巴细胞对IgE-抗原复合物的反应是自主的。用IgE和抗原过夜孵育后,未观察到I类MHC或sIgM的变化。这些结果证明了IgE-抗原复合物在细胞间信号传导中的重要性,并进一步表明IgE系统在免疫反应中发挥的作用比通常认为的更广泛。