双环咪唑的作用机制确定了肿瘤坏死因子α的翻译调控途径。

Journal of inflammation Pub Date : 1995-01-01
W Prichett, A Hand, J Sheilds, D Dunnington
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引用次数: 0

摘要

双环咪唑抑制脂多糖处理的人单核细胞肿瘤坏死因子α (TNF)的表达。我们研究了具有代表性的抑制剂SK&F 86002对THP-1细胞合成TNF的作用机制。在TNF mRNA积累不受影响的情况下,SK&F 86002降低了TNF蛋白水平,表明其具有转录后作用。SK&F 86002在5小时内未检测到对TNF mRNA诱导率或稳态水平的影响。SK&F 86002抑制TNF蛋白合成的动力学与大霉素一致,而与放线菌素不一致,提示SK&F 86002对TNF mRNA翻译有影响。通过蔗糖梯度沉降,我们发现静止的THP-1细胞含有大量的TNF mRNA,主要与43S前核糖体复合物相关。脂多糖激活细胞导致TNF mRNA水平升高,并增加了与多核糖体相关的比例。用脂多糖加SK&F 86002处理导致含有43S复合物的部分中TNF mRNA的显著积累,并伴随着多聚体相关TNF信息的减少。脂多糖和sk&f86002均不影响同一组分中亲环蛋白mRNA的数量和分布。结果表明,脂多糖在起始阶段激活TNF翻译,SK&F 86002抑制这一激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanism of action of bicyclic imidazoles defines a translational regulatory pathway for tumor necrosis factor alpha.

Expression of tumor necrosis factor alpha (TNF) by lipopolysaccharide-treated human monocytic cells is inhibited by bicyclic imidazoles. We studied the mechanism of action of a representative inhibitor, SK&F 86002, on synthesis of TNF by THP-1 cells. Levels of TNF protein were lowered by SK&F 86002 under conditions where TNF mRNA accumulation was unaffected, suggesting a post-transcriptional action. No effect of SK&F 86002 was detected on the rate of induction of TNF mRNA or steady state levels over a 5 hr period. The kinetics of SK&F 86002 inhibition of TNF protein synthesis coincided with those of anisomycin, not with actinomycin, suggesting an effect of SK&F 86002 on TNF mRNA translation. By using sucrose gradient sedimentation, we showed that quiescent THP-1 cells contained a substantial amount of TNF mRNA which was primarily associated with 43S pre-ribosomal complexes. Activation of the cells with lipopolysaccharide caused an elevation of the TNF mRNA level and increased the proportion associated with polyribosomes. Treatment with lipopolysaccharide plus SK&F 86002 led to a marked accumulation of TNF mRNA in the 43S complex-containing fractions and a concomitant reduction of polysome-associated TNF message. Neither lipopolysaccharide nor SK&F 86002 affected the amount or distribution of cyclophilin mRNA in the same fractions. The results suggest that lipopolysaccharide activates TNF translation at the initiation step and that SK&F 86002 inhibits this activation.

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