Krämer B K, Bucher M, Sandner P, Ittner K P, Riegger G A, Ritthaler T, Kurtz A
Klinik und Poliklinik für Innere Medizin II, Universität Regensburg, Germany.
Kidney Int. 1997 Feb;51(2):444-7. doi: 10.1038/ki.1997.59.
There is accumulating evidence from in vitro studies suggesting that the genes of endothelin-1, PDGF, and VEGF are, like the erythropoietin gene, regulated by oxygen tension and by divalent cations. Hypoxia-induced stimulation of, such as endothelin-1, PDGF or VEGF might be involved in the pathogenesis of acute or chronic renal failure, and in renal "inflammatory" diseases (glomerulonephritis, vasculitis, allograft rejection). Hypoxia (8% O2) for six hours caused a 55-fold/1.6-fold increase of renal erythropoietin/endothelin-1 gene expression, whereas endothelin-3, PDGF-A, PDGF-B, and VEGF gene expression was unchanged. Carbon monoxide (0.1%) treatment for six hours stimulated renal erythropoietin gene expression 140-fold; however, endothelin-1, endothelin-3, PDGF-A, PDGF-B, and VEGF gene expression was not affected. Finally, cobalt treatment (60 mg/kg CoCl2) increased only renal erythropoietin/PDGF-B gene expression 5-fold/1.65-fold. These findings suggest that hypoxia is a rather weak stimulus for renal endothelin-1 gene expression, and that renal PDGF and VEGF gene expression in vivo is not sensitive to tissue hypoxia, in contrast to cell culture experiments. The in vivo regulation of endothelin-1, PDGF, and VEGF differs substantially from that of erythropoietin, suggesting that the basic gene regulatory mechanisms may not be the same.
体外研究积累的证据表明,内皮素 -1、血小板衍生生长因子(PDGF)和血管内皮生长因子(VEGF)的基因,与促红细胞生成素基因一样,受氧张力和二价阳离子调控。缺氧诱导的内皮素 -1、PDGF或VEGF等因子的刺激可能参与急性或慢性肾衰竭以及肾脏“炎症性”疾病(肾小球肾炎、血管炎、同种异体移植排斥反应)的发病机制。6小时的低氧(8%氧气)导致肾脏促红细胞生成素/内皮素 -1基因表达增加55倍/1.6倍,而内皮素 -3、PDGF -A、PDGF -B和VEGF基因表达未改变。6小时的一氧化碳(0.1%)处理刺激肾脏促红细胞生成素基因表达140倍;然而,内皮素 -1、内皮素 -3、PDGF -A、PDGF -B和VEGF基因表达未受影响。最后,钴处理(60 mg/kg CoCl2)仅使肾脏促红细胞生成素/PDGF -B基因表达增加5倍/1.65倍。这些发现表明,缺氧对肾脏内皮素 -1基因表达是一种相对较弱的刺激,并且与细胞培养实验相反,体内肾脏PDGF和VEGF基因表达对组织缺氧不敏感。内皮素 -1、PDGF和VEGF的体内调控与促红细胞生成素的调控有很大不同,这表明基本的基因调控机制可能不一样。