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α-1抗胰蛋白酶选择性地上调人类B细胞分化为分泌IgE和IgG4的细胞。

Alpha-1 antitrypsin up-regulates human B cell differentiation selectively into IgE- and IgG4- secreting cells.

作者信息

Jeannin P, Lecoanet-Henchoz S, Delneste Y, Gauchat J F, Bonnefoy J Y

机构信息

Geneva Biomedical Research Institute, Immunology Department, Glaxo Wellcome R&D SA, Switzerland.

出版信息

Eur J Immunol. 1998 Jun;28(6):1815-22. doi: 10.1002/(SICI)1521-4141(199806)28:06<1815::AID-IMMU1815>3.0.CO;2-5.

Abstract

Numerous allergens have proteolytic activities. It has been speculated that this property may contribute to their allergenicity. Therefore, we have evaluated the effect of different physiological protease inhibitors (PI) on the regulation of human IgE synthesis. Unexpectedly, the serine PI, alpha-1 antitrypsin, also called alpha-1 protease inhibitor (alpha1PI), induced a potent and selective dose-dependent increase of IgE and IgG4 production by human tonsillar B cells stimulated with the IgE and IgG4 switch factors, IL-4 and anti-CD40 mAb. The other serine PI tested were inefficient. Furthermore, this effect of alpha1PI was accompanied by an increase in (1) germ-line and mature sigma mRNA transcription, (2) proliferation and (3) membrane CD23 and CD21 expression, while the expression of other molecules involved in the regulation of IgE synthesis was unchanged. Since CD23-CD21 pairing plays a crucial role in the up-regulation of IgE synthesis, we have tested whether blocking this interaction affected alpha1PI-increased IgE production. The neutralizing anti-CD23 mAb, Mab 25, partly reversed the IgE increase caused by alpha1PI. Moreover, alpha1PI potentiation of IgE synthesis was prevented by elastase, a natural substrate of alpha1PI, thereby suggesting that alpha1PI may inhibit endogenous B cell enzyme(s) involved in the down-regulation of IgE synthesis. Alpha1PI also potentiated IgE and IgG4 production by IL-4-stimulated peripheral blood mononuclear cells but was not a switch factor for IgE and IgG4 as it was unable to replace IL-4 or anti-CD40 mAb in inducing IgE and IgG4 production. In conclusion, this study shows that alpha1PI acts as a potent co-stimulus for IgE and IgG4 synthesis and suggests that the equilibrium between protease/ protease inhibitor participates in the control of human IgE and IgG4 synthesis.

摘要

众多变应原具有蛋白水解活性。据推测,此特性可能与其变应原性有关。因此,我们评估了不同生理蛋白酶抑制剂(PI)对人IgE合成调节的影响。出乎意料的是,丝氨酸PI,α-1抗胰蛋白酶,也称为α-1蛋白酶抑制剂(α1PI),可诱导经IgE和IgG4转换因子、IL-4和抗CD40单克隆抗体刺激的人扁桃体B细胞产生强效且选择性的剂量依赖性IgE和IgG4增加。所测试的其他丝氨酸PI无效。此外,α1PI的这种作用伴随着以下方面的增加:(1)种系和成熟σmRNA转录,(2)增殖,以及(3)膜CD23和CD21表达,而参与IgE合成调节的其他分子的表达未改变。由于CD23 - CD21配对在IgE合成上调中起关键作用,我们测试了阻断这种相互作用是否会影响α1PI增加的IgE产生。中和性抗CD23单克隆抗体Mab 25部分逆转了α1PI引起的IgE增加。此外,α1PI对IgE合成的增强作用被弹性蛋白酶(α1PI的天然底物)所抑制,从而表明α1PI可能抑制参与IgE合成下调的内源性B细胞酶。α1PI还增强了IL-4刺激的外周血单个核细胞产生的IgE和IgG4,但它不是IgE和IgG4的转换因子,因为它无法在诱导IgE和IgG4产生时替代IL-4或抗CD40单克隆抗体。总之,本研究表明α1PI作为IgE和IgG4合成的强效共刺激因子,并提示蛋白酶/蛋白酶抑制剂之间的平衡参与了人IgE和IgG4合成的控制。

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