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首页> 外文期刊>Nephrology, dialysis, transplantation: official publication of the European Dialysis and Transplant Association - European Renal Association >Expression and physical association of Fc alpha receptor and Fc receptor gamma chain in human mesangial cells.
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Expression and physical association of Fc alpha receptor and Fc receptor gamma chain in human mesangial cells.

机译:Fcα受体和Fc受体γ链在人系膜细胞中的表达和物理缔合。

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BACKGROUND: Most intensive investigations on the pathogenesis of IgA nephropathy have focused on the process before IgA deposition and the characteristics of IgA/IgA immune complex (IgA IC), but it still remains uncertain whether mesangial IgA ICs may cause glomerular injuries directly or are only secondary events of another pathological process. To assess the role of IgA ICs in IgA nephropathy, we investigated the characteristics of Fc alpha receptor (Fc alphaR) and FcR gamma chain which is a signalling subunit of FcR in human mesangial cells (MCs). METHODS: Gene expression of Fc alphaR and FcR gamma chain of human cultured MCs was examined by RT-PCR and subsequent Southern blot analyses. Sequence analyses after subcloning were also performed for further confirmation. Expression of Fc alphaR and FcR gamma chain at the protein level and their physical association in MCs were determined by immunoprecipitation after stimulation of the cells with heat-aggregated IgA. RESULTS: Two distinct cDNA products were amplified from each cultured MC line. The sequence of the major product of approximately 900 bp was completely identical to that of Fc alphaR previously described. The smaller product had a 288 bp deletion which corresponded to exon 2 encoding the extracellular domain 2 of Fc alphaR. Gene expression of FcR gamma chain was also confirmed. Furthermore, we proved the physical association of Fc alphaR with the FcR gamma chain by co-immunoprecipitation under stimulation with a high dose of the heat-aggregated IgA. CONCLUSION: These findings suggested that polymeric IgA and/or IgA IC can directly activate MCs via Fc alphaR associated with the gamma chain. Our data also indicated that phenotypic variations of Fc alphaR occur on MC, such as splicing forms, the chain association and/or the alpha chain expression itself, which may contribute to the pathogenesis of IgA nephropathy.
机译:背景:关于IgA肾病发病机理的大多数深入研究都集中在IgA沉积之前的过程以及IgA / IgA免疫复合物(IgA IC)的特征,但仍不确定肾小球系膜IgA IC是直接引起肾小球损伤还是仅引起肾小球损伤另一个病理过程的继发事件。为了评估IgA IC在IgA肾病中的作用,我们研究了Fcα受体(Fc alphaR)和FcRγ链的特征,后者是人系膜细胞(MCs)中FcR的信号亚基。方法:通过RT-PCR和随后的Southern印迹分析检测人培养的MC的FcαR和FcRγ链的基因表达。还进行了亚克隆后的序列分析以进一步确认。用热聚集的IgA刺激细胞后,通过免疫沉淀测定Fc中的Fc alphaR和FcRγ链在蛋白质中的表达及其物理缔合。结果:从每个培养的MC系中扩增出两种不同的cDNA产物。大约900bp的主要产物的序列与先前描述的FcαR的序列完全相同。较小的产物具有288bp的缺失,其对应于编码FcαR的细胞外结构域2的外显子2。还证实了FcRγ链的基因表达。此外,我们通过在高剂量的热聚集IgA刺激下进行免疫共沉淀,证明了Fc alphaR与FcRγ链的物理缔合。结论:这些发现表明,聚合的IgA和/或IgA IC可以通过与γ链相关的Fc alphaR直接激活MC。我们的数据还表明,Fc alphaR的表型变异发生在MC上,例如剪接形式,链缔合和/或α链表达本身,这可能有助于IgA肾病的发病机理。

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