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ROLE OF TRANSCRIPTIONAL ACTIVATION OF I-KAPPA-B-ALPHA IN MEDIATION OF IMMUNOSUPPRESSION BY GLUCOCORTICOIDS

机译:I-KAPPA-B-α的转录激活在糖皮质激素介导的免疫抑制中的作用

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摘要

Glucocorticoids are potent immunosuppressive drugs, but their mechanism is poorly understood. Nuclear factor kappa B (NF-kappa B), a regulator of immune system and inflammation genes, may be a target for glucocorticoid-mediated immunosuppression. The activation of NF-kappa B involves the targeted degradation of its cytoplasmic inhibitor, I kappa B alpha, and the translocation of NF-kappa B to the nucleus. Here it is shown that the synthetic glucocorticoid dexamethasone induces the transcription of the I kappa B alpha gene, which results in an increased rate of I kappa B alpha protein synthesis. Stimulation by tumor necrosis factor causes the release of NF-kappa B from I kappa B alpha. However, in the presence of dexamethasone this newly released NF-kappa B quickly reassociates with newly synthesized I kappa B alpha, thus markedly reducing the amount of NF-kappa B that translocates to the nucleus. This decrease in nuclear NF-kappa B is predicted to markedly decrease cytokine secretion and thus effectively block the activation of the immune system.
机译:糖皮质激素是有效的免疫抑制药物,但对其作用机理了解甚少。免疫系统和炎症基因的调节剂核因子κB(NF-κB)可能是糖皮质激素介导的免疫抑制的靶标。 NF-κB的活化涉及其胞质抑制剂IκBα的靶向降解,以及NF-κB向核的转运。此处显示合成的糖皮质激素地塞米松诱导IκBα基因的转录,这导致IκBα蛋白合成的速率增加。肿瘤坏死因子的刺激导致NF-κB从IκBα释放。但是,在地塞米松的存在下,这种新释放的NF-κB与新合成的κBα迅速重新缔合,从而显着减少了转移到细胞核中的NF-κB的数量。核NF-κB的这种减少预计会明显减少细胞因子的分泌,从而有效地阻止免疫系统的激活。

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