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首页> 外文期刊>British Journal of Cancer >Strong and prolonged induction of c-jun and c-fos proto-oncogenes by photodynamic therapy
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Strong and prolonged induction of c-jun and c-fos proto-oncogenes by photodynamic therapy

机译:通过光动力疗法强烈而长时间地诱导c-jun和c-fos原癌基因

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Photodynamic therapy (PDT) is currently under investigation in phase II and III clinical studies for the treatment of tumours in superficial localisations. Thus far, the underlying mechanisms of PDT regarding cellular responses and gene regulation are poorly understood. Photochemically generated singlet oxygen (1O2) is mainly responsible for cytotoxicity induced by PDT. If targeted cells are not disintegrated, photo-oxidative stress leads to transcription and translation of various stress response and cytokine genes. Tumour necrosis factor (TNF) alpha, interleukin (IL) 1 and IL-6 are strongly induced by photodynamic treatment, supporting inflammatory action and immunological anti-tumour responses. To investigate the first steps of gene activation, this study focused on the proto-oncogenes c-jun and c-fos, both coding for the transcription factor activator protein 1 (AP-1), which was found to mediate IL-6 gene expression. We here determine the effects of photodynamic treatment on transcriptional regulation and DNA binding of transcription factor AP-1 in order to understand the modulation of subsequent regulatory steps. Photodynamic treatment of epithelial HeLa cells was performed by incubation with Photofrin and illumination with 630 nm laser light in vitro. Expression of the c-jun and c-fos genes was determined by way of Northern blot analysis, and DNA-binding activity of the transcription factor AP-1 was evaluated by electrophoretic mobility shift assay (EMSA). Photofrin-mediated photosensitisation of HeLa cells resulted in a rapid and dose-dependent induction of both genes but preferential expression of c-jun. Compared with the transient expression of c-jun and c-fos by phorbol ester stimulation, photodynamic treatment led to a prolonged activation pattern of both immediate early genes. Furthermore, mRNA stability studies revealed an increased half-life of c-jun and c-fos transcripts resulting from photosensitisation. Although mRNA accumulation after PDT was stronger and more prolonged compared with phorbol ester stimulation, with regard to AP-1 DNA-binding activity, phorbol ester was more efficient. Surprisingly, in addition to the activation of AP-1 DNA-binding via PDT, photodynamic treatment can decrease AP-1 DNA-binding of other strong inducers, such as the protein kinase C-mediated pathway of phorbol esters and the antioxidant pyrrolidine dithiocarbamate (PDTC). This study demonstrates a strong induction of c-jun and c-fos expression by PDT, with prolonged kinetics and mRNA stabilisation as compared with activation by phorbol esters. Interestingly, this observation is not coincident with an overinduction of AP-1 DNA-binding, hence suggesting that post-translational modifications are dominant regulatory mechanisms after PDT that tightly control AP-1 activity in the nucleus thus limiting the risk of deregulated oncogene expression.
机译:目前,光动力疗法(PDT)正在进行II和III期临床研究,以治疗浅表性肿瘤。到目前为止,关于细胞反应和基因调控的PDT的潜在机制了解甚少。光化学产生的单线态氧(1O2)是造成PDT诱导的细胞毒性的主要原因。如果目标细胞没有分解,光氧化应激会导致各种应激反应和细胞因子基因的转录和翻译。光动力学治疗强烈诱导肿瘤坏死因子(TNF)α,白介素(IL)1和IL-6,支持炎症反应和免疫抗肿瘤反应。为了研究基因激活的第一步,本研究集中于原癌基因c-jun和c-fos,它们均编码转录因子激活蛋白1(AP-1),被发现可介导IL-6基因表达。 。我们在这里确定光动力治疗对转录调节和转录因子AP-1的DNA结合的影响,以了解后续调节步骤的调节。通过与Photofrin孵育并在体外用630 nm激光照射进行上皮HeLa细胞的光动力处理。通过Northern印迹分析确定c-jun和c-fos基因的表达,并通过电泳迁移率变动分析(EMSA)评估转录因子AP-1的DNA结合活性。 Photofrin介导的HeLa细胞光敏化导致两个基因快速且剂量依赖性地诱导,但c-jun优先表达。与通过佛波酯刺激瞬时表达c-jun和c-fos相比,光动力处理导致两个立即早期基因的激活模式延长。此外,mRNA稳定性研究表明,由于光敏作用,c-jun和c-fos转录本的半衰期增加。尽管与佛波酯刺激相比,PDT后的mRNA积累更强且更长,但就AP-1 DNA结合活性而言,佛波酯更有效。令人惊讶的是,除了通过PDT激活AP-1 DNA结合外,光动力处理还可以降低其他强诱导物的AP-1 DNA结合,例如蛋白激酶C介导的佛波酯和抗氧化剂吡咯烷二硫代氨基甲酸酯( PDTC)。这项研究表明,与由佛波酯活化相比,PDT对c-jun和c-fos表达具有强烈的诱导作用,具有更长的动力学和mRNA稳定作用。有趣的是,该观察结果与AP-1 DNA结合的过度诱导并不相符,因此表明,PDT后翻译后修饰是主要的调控机制,该机制严格控制细胞核中AP-1的活性,从而限制了癌基因表达失控的风险。

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