首页> 外文期刊>Molecular cancer therapeutics >Mechanism of differentiation-enhanced photodynamic therapy for cancer: Upregulation of coproporphyrinogen oxidase by C/EBP transcription factors
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Mechanism of differentiation-enhanced photodynamic therapy for cancer: Upregulation of coproporphyrinogen oxidase by C/EBP transcription factors

机译:分化增强型光动力疗法治疗癌症的机制:C / EBP转录因子上调卟啉原氧化酶

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The efficacy of photodynamic therapy (PDT) for epithelial cancers is increased when PDT is combined with calcitriol (Vit D), a form of differentiation therapy (DT). Here, we describe an underlying mechanism for this effect. Differentiation-promoting agents are known to upregulate CCAAT/enhancer-binding proteins (C/ EBP), powerful regulators of cellular differentiation. In subcutaneous A431 tumors in mice, pretreatment with VitDinduced the expression ofC/EBPb isoforms, and of coproporphyrinogen oxidase (CPO), a heme pathway enzyme responsible for the conversion of 5-aminolevulinic acid (ALA) into protoporphyrin IX (PpIX), the principal light-absorbing molecule during PDT. To further investigate this apparent link between C/EBPs and CPO, two cell lines (MEL and LNCaP) were exposed to differentiating agents, and levels of PpIX, C/EBPs, and CPO were measured. Differentiating agents, or transfection of C/EBP expression vectors, increased C/EBP and CPO levels in parallel. Focusing on approximately 1,300 bp of upstream CPO gene promoter, we tested the ability of recombinant C/EBPa, C/EBPb, C/EBPd, and C/EBPz to bind to CPO gene sequences [electrophoretic mobility shift assay (EMSA) assays] and to affect transcriptional activity (luciferase assays). Multiple C/EBP consensus binding sites were identified (15 for mouse, 18 for human). Individual probes representing each site bound to C/EBPs with characteristic affinities (strong, moderate, or weak), but when sites were inactivated in the context of the native promoter, transcriptional activity was reduced nearly equally for strong or weak sites. Cooperative interactions between regularly spaced C/EBP sites seem critical for CPO transcriptional regulation by differentiation therapy. These results provide a mechanistic rationale for DT/ PDT combination therapy for cancer. Mol Cancer Ther; 12(8); 1638-50.
机译:当PDT与分化疗法(DT)的一种形式的骨化三醇(Vit D)结合使用时,光动力疗法(PDT)对上皮癌的疗效会提高。在这里,我们描述了这种效果的潜在机制。已知分化促进剂会上调CCAAT /增强子结合蛋白(C / EBP),这是细胞分化的强大调节剂。在小鼠的A431皮下肿瘤中,用VitD预处理可诱导C / EBPb亚型和原卟啉原氧化酶(CPO)的表达,后者是负责将5-氨基乙酰丙酸(ALA)转化为原卟啉IX(PpIX)的血红素途径酶。 PDT期间吸收光的分子。为了进一步研究C / EBP和CPO之间的这种明显联系,将两种细胞系(MEL和LNCaP)暴露于分化剂,并测量了PpIX,C / EBP和CPO的水平。分化剂或C / EBP表达载体的转染可并行提高C / EBP和CPO水平。着眼于大约1300 bp的上游CPO基因启动子,我们测试了重组C / EBPa,C / EBPb,C / EBPd和C / EBPz与CPO基因序列结合的能力[电泳迁移率分析(EMSA)分析]和影响转录活性(荧光素酶测定)。鉴定出多个C / EBP共有结合位点(小鼠15个,人18个)。代表每个位点的单个探针以特征亲和力(强,中或弱)与C / EBP结合,但是当位点在天然启动子的情况下失活时,强或弱位点的转录活性几乎均降低。规则间隔的C / EBP位点之间的合作相互作用对于通过分化疗法进行CPO转录调控似乎至关重要。这些结果为DT / PDT联合治疗癌症提供了机械原理。分子癌疗法; 12(8); 1638-50。

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