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白细胞介素10与转化生长因子β协同作用,诱导抗CD40激活的人初始B细胞分泌免疫球蛋白A。

Interleukin 10 and transforming growth factor beta cooperate to induce anti-CD40-activated naive human B cells to secrete immunoglobulin A.

作者信息

Defrance T, Vanbervliet B, Brière F, Durand I, Rousset F, Banchereau J

机构信息

Laboratory for Immunological Research, Schering-Plough, Dardilly, France.

出版信息

J Exp Med. 1992 Mar 1;175(3):671-82. doi: 10.1084/jem.175.3.671.

Abstract

In the present report, we have investigated the in vitro differentiation of surface(s) sIgD+ and sIgD- human B cells into Ig-secreting cells in response to various stimuli. sIgD+ B cells homogeneously expressed some of the antigens identifying mantle zone B cells, but lacked expression of germinal center markers, thus confirming that the B cell populations positively selected on the basis of sIgD expression were highly enriched for naive B lymphocytes. Conversely, sIgD- B cells expressed some of the antigens specifically associated with germinal center B cells. T cell-independent differentiation of sIgD+ and sIgD- B cells could be achieved by simultaneous crosslinking of sIgs and CD40 in the presence of a mouse Ltk- cell line stably expressing human CDw32/Fc gamma RII (CDw32 L cells). In this experimental system, sIgD+ B cells were exclusively proned for IgM synthesis, whereas sIgD- B cells produced IgG, IgM, and IgA. Both the human and viral forms of interleukin 10 (IL-10) strongly increased the Ig secretion by sIgD+ and sIgD- B cells simultaneously activated through sIgs and CD40. IgM and IgG constituted the predominant Ig isotype produced by sIgD+ and sIgD- B cells, respectively, in response to IL-10. sIgD+ B cells could be induced for IgA synthesis upon co-culturing with transforming growth factor beta (TGF-beta) and IL-10, in the presence of an anti-CD40 monoclonal antibody presented by the CDw32 L cells. In contrast, TGF-beta suppressed the IL-10-mediated IgG, IgM, and IgA secretions by sIgD- B cells. sIgD+ B cells could not be induced for IgA synthesis by TGF-beta and IL-10 after crosslinking of their sIgs, suggesting that ligation of CD40 was one of the obligatory signals required for commitment of naive B cells to IgA secretion. Limiting dilution experiments indicated that the IgA-potentiating effect of TGF-beta was due to its capacity to increase the frequency of IgA-producing cells, most likely as a consequence of class switching. Taken together, our data strongly suggest that TGF-beta is involved in the regulation of IgA isotype selection in humans.

摘要

在本报告中,我们研究了表面sIgD+和sIgD-人B细胞在各种刺激下体外分化为Ig分泌细胞的情况。sIgD+ B细胞均匀表达一些识别套区B细胞的抗原,但缺乏生发中心标志物的表达,从而证实基于sIgD表达阳性选择的B细胞群体富含幼稚B淋巴细胞。相反,sIgD- B细胞表达一些与生发中心B细胞特异性相关的抗原。在稳定表达人CDw32/FcγRII(CDw32 L细胞)的小鼠Ltk-细胞系存在的情况下,通过同时交联sIgs和CD40可实现sIgD+和sIgD- B细胞的非T细胞依赖性分化。在该实验系统中,sIgD+ B细胞专门倾向于合成IgM,而sIgD- B细胞产生IgG、IgM和IgA。人源和病毒形式的白细胞介素10(IL-10)均强烈增加通过sIgs和CD40同时激活的sIgD+和sIgD- B细胞的Ig分泌。作为对IL-10的反应,IgM和IgG分别是sIgD+和sIgD- B细胞产生的主要Ig同种型。在由CDw32 L细胞呈递的抗CD40单克隆抗体存在的情况下,sIgD+ B细胞在与转化生长因子β(TGF-β)和IL-10共培养时可被诱导合成IgA。相反,TGF-β抑制sIgD- B细胞的IL-10介导的IgG、IgM和IgA分泌。sIgD+ B细胞在其sIgs交联后不能被TGF-β和IL-10诱导合成IgA,这表明CD40的连接是幼稚B细胞定向分泌IgA所需的必需信号之一。有限稀释实验表明,TGF-β的IgA增强作用归因于其增加产生IgA细胞频率的能力,这很可能是类别转换的结果。综上所述,我们的数据强烈表明TGF-β参与了人类IgA同种型选择的调节。

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