Luna M C, Wong S, Gomer C J
Clayton Ocular Oncology Center, Childrens Hospital Los Angeles, California 90027.
Cancer Res. 1994 Mar 1;54(5):1374-80.
Photodynamic therapy (PDT) generates reactive oxygen species which initiate the cytotoxic events of this tumor treatment. We demonstrate that PDT mediated oxidative stress induced a transient increase in the early response genes c-fos, c-jun, c-myc, and egr-1 in murine radiation-induced fibrosarcoma cells. Incubation of exponentially growing cells with porphyrin based photosensitizers in the dark also induced an increase in mRNA levels of early response genes. However, the xanthine photosensitizer, rose bengal, produced increased c-fos mRNA levels only following light treatment. Nuclear runoff experiments confirmed that the induction of c-fos mRNA is controlled in part at the level of transcription. Likewise, a chloramphenicol acetyltransferase reporter construct containing the major c-fos transcriptional response elements was inducible by porphyrin and PDT. Signal transduction pathways associated with PDT mediated c-fos activation were examined by treating cells with protein kinase inhibitors. Staurosporine and 1-(5-isoquinolinesulfonyl)-2-methylpiperazine inhibited PDT mediated c-fos activation while N-(2-guanidinoethyl)-5-isoquinoline-sulfonamide had no effect. In addition, quinacrine, which can inhibit phospholipase activity, blocked PDT induced c-fos mRNA expression. These results suggest that photosensitizer mediated oxidative stress acts through protein kinase-mediated signal transduction pathway(s) to activate early response genes.
光动力疗法(PDT)可产生活性氧,引发这种肿瘤治疗的细胞毒性事件。我们证明,PDT介导的氧化应激在小鼠辐射诱导的纤维肉瘤细胞中引起早期反应基因c-fos、c-jun、c-myc和egr-1的短暂增加。在黑暗中用基于卟啉的光敏剂培养指数生长的细胞,也会导致早期反应基因的mRNA水平升高。然而,黄嘌呤光敏剂孟加拉玫瑰红仅在光照处理后才会使c-fos mRNA水平升高。核转录实验证实,c-fos mRNA的诱导部分受转录水平控制。同样,含有主要c-fos转录反应元件的氯霉素乙酰转移酶报告构建体可被卟啉和PDT诱导。通过用蛋白激酶抑制剂处理细胞来研究与PDT介导的c-fos激活相关的信号转导途径。星形孢菌素和1-(5-异喹啉磺酰基)-2-甲基哌嗪抑制PDT介导的c-fos激活,而N-(2-胍基乙基)-5-异喹啉磺酰胺则没有作用。此外,可抑制磷脂酶活性的奎纳克林可阻断PDT诱导的c-fos mRNA表达。这些结果表明,光敏剂介导的氧化应激通过蛋白激酶介导的信号转导途径来激活早期反应基因。