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通过肾小球系膜细胞上功能重建的Fα受体(CD89)产生单核细胞趋化蛋白(MCP)-1 。

Monocyte chemoattractant protein (MCP)-1 production via functionally reconstituted Fcalpha receptor (CD89) on glomerular mesangial cells.

作者信息

Tsuge T, Suzuki Y, Shimokawa T, Horikoshi S, Okumura K, Ra C, Tomino Y

机构信息

Department of Internal Medicine, Juntendo University School of Medicine, 2-1-1 Hongo, 113-8421 Tokyo, Japan, Bunkyo-ku.

出版信息

Inflamm Res. 2003 Oct;52(10):428-32. doi: 10.1007/s00011-003-1200-x.

Abstract

BACKGROUND

Fc alpha receptor (FcalphaR; CD89) is the receptor for Fc portion of IgA in various cells, and displays various immunological responses on binding. It is important to analyze the mesangial functions via FcalphaR in the pathogenesis of IgA nephropathy. However, it is still controversial whether FcalphaR is expressed on mesangial cells. To assess biological functions of FcalphaR on the mesangial cells, we established mesangial transfectants that expressed FcalphaR with or without FcRgamma chain that is a common signaling molecule of FcRs. The production of monocyte chemoattractant protein-1 (MCP-1) by mesangial cells is known to contribute to cellular infiltration into glomeruli and subsequent glomerular injuries.

METHODS

Murine mesangial cell lines (SV40 MES 13) were transfected with cDNA of the human FcalphaR. Furthermore, we co-transfected some of the FcalphaR transfectants with cDNA of human FcRgamma chain. The tyrosine phosphorylation of the intra-mesangial proteins after FcalphaR cross-linking was examined by immunoprecipitation. MCP-1 production from each transfectant stimulated with heat aggregated IgA was determined by sandwich ELISA.

RESULTS

Two kinds of mesangial transfectants stably expressed human FcalphaR with or without FcRgamma chain (FcalphaR(+), FcalphaR(+)/gamma(+)). Phosphorylation of FcRgamma chain and syk kinase was detected in FcalphaR(+) and FcalphaR(+)/gamma(+) cells, but not in untransfected cells. Aggregated IgA induced significantly higher MCP-1 production in FcalphaR(+)/gamma(+) than those in FcalphaR(+) or untransfected control.

CONCLUSIONS

Present study demonstrated that FcalphaR and FcRgamma chain could be reconstituted in mesangial cells and mediated MCP-1 production by aggregated IgA in a dose-dependent manner. Current data would argue that FcalphaR can be activated in mesangial cells through their own machinery, although underlying mechanisms for FcalphaR induction in mesangial cells remain unclear.

摘要

背景

Fcα受体(FcalphaR;CD89)是各种细胞中IgA Fc段的受体,结合后可产生多种免疫反应。在IgA肾病发病机制中,通过FcalphaR分析系膜功能很重要。然而,系膜细胞上是否表达FcalphaR仍存在争议。为评估FcalphaR在系膜细胞上的生物学功能,我们建立了表达FcalphaR(有或无FcRγ链,FcRγ链是Fc受体的常见信号分子)的系膜转染细胞系。已知系膜细胞产生单核细胞趋化蛋白-1(MCP-1)有助于细胞浸润到肾小球并导致随后的肾小球损伤。

方法

将人FcalphaR的cDNA转染至小鼠系膜细胞系(SV40 MES 13)。此外,我们将一些FcalphaR转染细胞与人类FcRγ链的cDNA共转染。通过免疫沉淀检测FcalphaR交联后系膜内蛋白的酪氨酸磷酸化。用夹心ELISA法测定热聚集IgA刺激后各转染细胞系中MCP-1的产生。

结果

两种系膜转染细胞系稳定表达有或无FcRγ链的人FcalphaR(FcalphaR(+),FcalphaR(+)/γ(+))。在FcalphaR(+)和FcalphaR(+)/γ(+)细胞中检测到FcRγ链和syk激酶的磷酸化,但未转染细胞中未检测到。聚集的IgA诱导FcalphaR(+)/γ(+)细胞产生的MCP-1明显高于FcalphaR(+)细胞或未转染的对照细胞。

结论

本研究表明,FcalphaR和FcRγ链可在系膜细胞中重组,并以剂量依赖方式介导聚集IgA产生MCP-1。目前的数据表明,FcalphaR可通过其自身机制在系膜细胞中被激活,但系膜细胞中FcalphaR诱导的潜在机制仍不清楚。

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