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Effects of glucose-regulated protein94 (Grp94) on Ig secretion from human blood mononuclear cells

机译:葡萄糖调节蛋白94(Grp94)对人血单核细胞分泌Ig的影响

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Grp94 is the main endoplasmic reticulum-resident heat shock protein (HSP) that besides chaperoning native proteins, displays important modulatory effects on both the innate and adaptive immune response. Since the knowledge of a direct influence of Grp94 on the humoral response is lacking, in this work we tested the effect of Grp94 on Ig secretion from peripheral blood mononuclear cells (PBMCs) of five normal volunteers. The concentration of Ig secreted in the medium after incubation of 15 days was found increased in a dose-dependent manner in the presence of Grp94, used at the final concentrations of 10 and 100 ng/ml. However, by measuring the Ig secretion at different incubation times, it was apparent that maximal percent stimulation by Grp94 occurred at 7 days, decreasing thereafter. In addition, the pattern of Ig secretion in time significantly differed in the presence of Grp94 with respect to that of control PBMCs. Grp94 also stimulated in a dose-dependent manner the PBMC proliferation, an effect that preceded the Ig secretion and was accompanied by morphological changes of cells similar to those induced by the pokeweed mitogen. Effects of Grp94 on PBMCs were mediated by an intense activation of the MEK-ERK1/2 pathway and by an increased expression of HSP90. Results indicate that Grp94 can activate the humoral response by a cytokine-like, cell-mediated mechanism that leads to an accelerated process of B cell maturation and differentiation.
机译:Grp94是主要的内质网驻留热激蛋白(HSP),除了伴有天然蛋白,还对先天和适应性免疫反应均显示重要的调节作用。由于缺乏有关Grp94对体液反应的直接影响的知识,因此在这项工作中,我们测试了Grp94对5名正常志愿者外周血单核细胞(PBMC)Ig分泌的影响。发现在孵育15天后培养基中分泌的Ig浓度在存在Grp94的情况下以剂量依赖性方式增加,最终浓度为10和100 ng / ml。但是,通过在不同的孵育时间测量Ig分泌,很明显,Grp94的最大刺激百分比发生在7天,此后降低。另外,在存在Grp94的情况下,相对于对照PBMC,Ig的分泌模式在时间上显着不同。 Grp94还以剂量依赖性方式刺激PBMC增殖,这种作用是在Ig分泌之前发生的,并伴随着与商陆有丝分裂原诱导的细胞相似的细胞形态变化。 Grp94对PBMC的影响是由MEK-ERK1 / 2途径的强烈激活和HSP90表达的增加介导的。结果表明,Grp94可通过细胞因子样细胞介导的机制激活体液反应,从而导致B细胞成熟和分化的过程加速。

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