Elia G, Polla B, Rossi A, Santoro M G
Institute of Experimental Medicine, CNR, Roma, Italy.
Eur J Biochem. 1999 Sep;264(3):736-45. doi: 10.1046/j.1432-1327.1999.00610.x.
Prostaglandins of the A type (PGA) exert a cytoprotective activity during hyperthermia and virus infection. This effect is associated with induction of heat shock proteins (HSP) in mammalian cells. We now report that, in human monocytes, PGA1 is able to induce the synthesis of the iron-binding, redox-regulated protein ferritin. L-chain ferritin induction is consequent to a substantial increase in the accumulation of L-chain ferritin transcripts in PGA1-treated cells, whereas H-chain ferritin is regulated post-transcriptionally, consequently to reduction of iron-regulatory protein binding to iron-responsive elements in ferritin mRNA. Ferritin induction is specific for cyclopentenone prostaglandins (PGA1, PGA2, PGJ2, Delta12-PGJ2), whereas other arachidonic acid (AA) metabolites have no effect. In human monocytes, PGA1 also induces heat shock gene transcription via heat shock factor activation, as well as the synthesis of the oxidative-stress protein heme oxygenase (HOS). Differently from HSP, the induction of ferritin by PGA1 is specific for monocytes. Monocytes/macrophages play a pivotal role in inflammation, controlling iron metabolism and releasing a variety of mediators, including proinflammatory reactive oxygen species (ROS), cytokines and AA metabolites. As ferritin, together with hsp70 and HO, plays a key role in protection from oxidant damage, these results suggest that PGA1 may have cytoprotective activity also during oxidative injury.
A 型前列腺素(PGA)在高温和病毒感染期间发挥细胞保护活性。这种作用与哺乳动物细胞中热休克蛋白(HSP)的诱导有关。我们现在报告,在人单核细胞中,PGA1能够诱导铁结合、氧化还原调节蛋白铁蛋白的合成。L 链铁蛋白的诱导是由于 PGA1 处理的细胞中 L 链铁蛋白转录本积累大幅增加所致,而 H 链铁蛋白是在转录后受到调节,这是由于铁调节蛋白与铁蛋白 mRNA 中铁反应元件的结合减少。铁蛋白的诱导对环戊烯酮前列腺素(PGA1、PGA2、PGJ2、Δ12-PGJ2)具有特异性,而其他花生四烯酸(AA)代谢产物则无作用。在人单核细胞中,PGA1 还通过热休克因子激活诱导热休克基因转录,以及氧化应激蛋白血红素加氧酶(HOS)的合成。与 HSP 不同,PGA1 对铁蛋白的诱导对单核细胞具有特异性。单核细胞/巨噬细胞在炎症中起关键作用,控制铁代谢并释放多种介质,包括促炎活性氧(ROS)、细胞因子和 AA 代谢产物。由于铁蛋白与 hsp70 和 HO 一起在保护免受氧化损伤中起关键作用,这些结果表明 PGA1 在氧化损伤期间也可能具有细胞保护活性。