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抑制IgA产生的小鼠IgA结合因子(IgA-BF):IgA-BF的特性及靶标特异性

Murine IgA binding factors (IgA-BF) suppressing IgA production: characterization and target specificity of IgA-BF.

作者信息

Noro N, Adachi M, Yasuda K, Masuda T, Yodoi J

出版信息

J Immunol. 1986 Apr 15;136(8):2910-6.

PMID:3514749
Abstract

Chemical and functional properties of IgA binding factor(s) (IgA-BF) from both murine Con A-activated spleen cells and Fc gamma R+, Fc alpha R+ T hybridoma cells (T2D4) were studied. IgA-BF produced from the cells after preculture with IgA were purified with IgA-Sepharose. Purified IgA-BF inhibited the binding of IgA to Fc alpha R+ L5178Y T lymphoma cells, and class-specifically suppressed in vitro IgA synthesis of the pokeweed mitogen (PWM)-stimulated murine spleen cells. Both IgA-specific suppressive activity and IgA binding activity of the factor(s) were co-fractionated between BSA and OVA in gel filtration analysis. SDS-PAGE analysis of IgA-BF biosynthetically labeled with [35S]methionine showed a specific band on 56,000. Suppressive activity of IgA-BF was absorbed with lentil-lectin-Sepharose and was eluted with 0.2 M alpha-methyl-D-mannoside. The suppressive activity obtained from T2D4 cells (H-2k) and BALB/c Con A blasts (H-2d) was absorbed with the corresponding anti-H-2 and anti-I-A column and recovered in the acid-eluate. The activity was not absorbed with the unrelated anti-H-2 column. Despite the presence of MHC products, IgA-BF from both cell sources equally suppressed IgA-specific responses of BALB/c (H-2d), C3H/He (H-2k), and C57BL/10 (H-2b) spleen cells. They also suppressed IgA production as well as IgA synthesis of PWM-stimulated culture of human peripheral blood lymphocytes without affecting IgM and IgG responses. Suppression of murine and human IgA responses both in mouse and human were mediated by the molecules having the same Ia products, suggesting that there is no MHC, as well as species restriction, for the interaction between IgA-BF and their target cells. IgA-specific suppressive activity was absorbed with human B blastoid cells bearing surface IgA (Dakiki) but not with those bearing surface IgG (CESS) or murine and human T cell line cells (BW5147, L5178Y, HPB-ALL, and MOLT4), indicating that IgA-BF interact with B cells bearing IgA to suppress their differentiation.

摘要

对来自小鼠伴刀豆球蛋白A激活的脾细胞以及FcγR⁺、FcαR⁺ T杂交瘤细胞(T2D4)的IgA结合因子(IgA-BF)的化学和功能特性进行了研究。用IgA预先培养细胞后产生的IgA-BF用IgA-琼脂糖进行纯化。纯化后的IgA-BF抑制IgA与FcαR⁺ L5178Y T淋巴瘤细胞的结合,并特异性地抑制体外商陆丝裂原(PWM)刺激的小鼠脾细胞的IgA合成。在凝胶过滤分析中,该因子的IgA特异性抑制活性和IgA结合活性在牛血清白蛋白(BSA)和卵清蛋白(OVA)之间共同分级分离。用[³⁵S]甲硫氨酸进行生物合成标记的IgA-BF的SDS-PAGE分析显示在56,000处有一条特异性条带。IgA-BF的抑制活性被扁豆凝集素-琼脂糖吸附,并用0.2Mα-甲基-D-甘露糖苷洗脱。从T2D4细胞(H-2k)和BALB/c伴刀豆球蛋白A母细胞(H-2d)获得的抑制活性被相应的抗H-2和抗I-A柱吸附,并在酸洗脱液中回收。该活性不被无关的抗H-2柱吸附。尽管存在主要组织相容性复合体(MHC)产物,但来自两种细胞来源的IgA-BF同样抑制BALB/c(H-2d)、C3H/He(H-2k)和C57BL/10(H-2b)脾细胞的IgA特异性反应。它们还抑制人外周血淋巴细胞PWM刺激培养物中的IgA产生以及IgA合成,而不影响IgM和IgG反应。小鼠和人对小鼠和人IgA反应的抑制均由具有相同Ia产物的分子介导,这表明IgA-BF与其靶细胞之间的相互作用不存在MHC限制以及种属限制。IgA特异性抑制活性被表面带有IgA的人B淋巴母细胞(Dakiki)吸附,但不被表面带有IgG的细胞(CESS)或小鼠和人T细胞系细胞(BW5147、L5178Y、HPB-ALL和MOLT4)吸附,这表明IgA-BF与带有IgA的B细胞相互作用以抑制其分化。

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