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Increased proteolysis of diphtheria toxin by human monocytes after heat shock: a subsidiary role for heat-shock protein 70 in antigen processing

机译:热休克后人单核细胞增加白喉毒素的蛋白水解作用:热激蛋白70在抗原加工中的辅助作用

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摘要

The expression of heat-shock proteins (hsp) increases after exposure to various stresses including elevated temperatures, oxidative injury, infection and inflammation. As molecular chaperones, hsp have been shown to participate in antigen processing and presentation, in part through increasing the stability and expression of major histocompatibility complex molecules. Heat shock selectively increases human T-cell responses to processed antigen, but does not affect T-cell proliferation induced by non-processed antigens. Here, we have analysed the mechanisms by which stress such as heat shock, and the ensuing hsp over-expression affect the processing of diphtheria toxin (DT) in peripheral blood monocytes. We found that heat shock increased DT proteolysis in endosomes and lysosomes while the activities of the cathepsins B and D, classically involved in DT proteolysis, were decreased. These effects correlated with the heat-shock-mediated increase in hsp 70 expression observed in endosomes and lysosomes. Actinomycin D or blocking anti-hsp 70 antibodies abolished the heat-shock-mediated increase in DT proteolysis. These data indicate that the increased expression of hsp 70 constitutes a subsidiary mechanism that facilitates antigen proteolysis in stressed cells. Confirming these data, presentation by formaldehyde-fixed cells of DT proteolysates that were obtained with endosomes and lysosomes from heat-shocked peripheral blood monocytes showed higher stimulation of T cells than those generated with endosomes and lysosomes from control peripheral blood monocytes.
机译:在暴露于各种压力(包括高温,氧化损伤,感染和炎症)后,热休克蛋白(hsp)的表达增加。作为分子伴侣,hsp已显示参与抗原加工和呈递,部分是通过增加主要组织相容性复合物分子的稳定性和表达来实现的。热休克选择性地增加人T细胞对加工抗原的反应,但不影响未加工抗原诱导的T细胞增殖。在这里,我们分析了压力,如热休克和随之而来的热休克蛋白过表达影响外周血单核细胞中白喉毒素(DT)加工的机制。我们发现,热休克会增加内体和溶酶体中的DT蛋白水解,而组织蛋白酶B和D(通常参与DT蛋白水解)的活性降低。这些作用与在内体和溶酶体中观察到的热休克介导的hsp 70表达增加有关。放线菌素D或阻断性抗热休克蛋白70抗体消除了热激介导的DT蛋白水解的增加。这些数据表明,hsp 70表达的增加构成了辅助机制,该机制促进了应激细胞中的抗原蛋白水解。证实这些数据的是,用甲醛固定的细胞以热休克的外周血单核细胞的内体和溶酶体获得的DT蛋白水解产物,比用对照的外周血单核细胞的内体和溶酶体产生的T细胞受到了更高的刺激。

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