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首页> 外文期刊>BMC Cancer >Regulation of sonic hedgehog- GLI1 downstream target genes PTCH1, Cyclin D2, Plakoglobin, PAX6 and NKX2.2 and their epigenetic status in medulloblastoma and astrocytoma
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Regulation of sonic hedgehog- GLI1 downstream target genes PTCH1, Cyclin D2, Plakoglobin, PAX6 and NKX2.2 and their epigenetic status in medulloblastoma and astrocytoma

机译:声猬蛋白-GLI1下游靶基因PTCH1,Cyclin D2,Plakoglobin,PAX6和NKX2.2的调控及其在成髓细胞瘤和星形细胞瘤中的表观遗传状态

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Background The Sonic hedgehog (Shh) signaling pathway is critical for cell growth and differentiation. Impairment of this pathway can result in both birth defects and cancer. Despite its importance in cancer development, the Shh pathway has not been thoroughly investigated in tumorigenesis of brain tumors. In this study, we sought to understand the regulatory roles of GLI1 , the immediate downstream activator of the Shh signaling pathway on its downstream target genes PTCH1 , Cyclin D2 , Plakoglobin , NKX2.2 and PAX6 in medulloblastoma and astrocytic tumors. Methods We silenced GLI1 expression in medulloblastoma and astrocytic cell lines by transfection of siRNA against GLI1 . Subsequently, we performed RT-PCR and quantitative real time RT-PCR (qRT-PCR) to assay the expression of downstream target genes PTCH1, Cyclin D2, Plakoglobin, NKX2.2 and PAX6 . We also attempted to correlate the pattern of expression of GLI1 and its regulated genes in 14 cell lines and 41 primary medulloblastoma and astrocytoma tumor samples. We also assessed the methylation status of the Cyclin D2 and PTCH1 promoters in these 14 cell lines and 58 primary tumor samples. Results Silencing expression of GLI1 resulted up-regulation of all target genes in the medulloblastoma cell line, while only PTCH1 was up-regulated in astrocytoma. We also observed methylation of the cyclin D2 promoter in a significant number of astrocytoma cell lines (63%) and primary astrocytoma tumor samples (32%), but not at all in any medulloblastoma samples. PTCH1 promoter methylation was less frequently observed than Cyclin D2 promoter methylation in astrocytomas, and not at all in medulloblastomas. Conclusions Our results demonstrate different regulatory mechanisms of Shh- GLI1 signaling. These differences vary according to the downstream target gene affected, the origin of the tissue, as well as epigenetic regulation of some of these genes.
机译:背景声波刺猬(Shh)信号通路对于细胞生长和分化至关重要。该途径的损害可导致先天缺陷和癌症。尽管其在癌症发展中的重要性,但尚未在脑肿瘤的肿瘤发生中彻底研究Shh途径。在这项研究中,我们试图了解GLI1在髓母细胞瘤和星形细胞肿瘤中的调控作用,GLI1是Shh信号通路在其下游靶基因PTCH1,Cyclin D2,Plakoglobin,NKX2.2和PAX6上的直接下游激活因子。方法用siRNA转染GLI1基因来沉默髓母细胞瘤和星形胶质细胞系中GLI1的表达。随后,我们进行了RT-PCR和定量实时RT-PCR(qRT-PCR),以检测下游靶基因PTCH1,Cyclin D2,Plakoglobin,NKX2.2和PAX6的表达。我们还试图将GLI1及其调控基因在14个细胞系和41个原发性髓母细胞瘤和星形细胞瘤样品中的表达模式相关联。我们还评估了这14个细胞系和58个原发性肿瘤样品中Cyclin D2和PTCH1启动子的甲基化状态。结果沉默的GLI1表达导致了成髓细胞瘤细胞系中所有靶基因的上调,而星形细胞瘤中只有PTCH1上调。我们还观察到大量星形细胞瘤细胞系(63%)和原发性星形细胞瘤肿瘤样本(32%)中细胞周期蛋白D2启动子的甲基化,但在任何髓母细胞瘤样本中根本没有。在星形细胞瘤中,与周期蛋白D2启动子甲基化相比,PTCH1启动子甲基化的频率较低,而在髓母细胞瘤中则完全没有。结论我们的结果证明了Shh-GLI1信号传导的不同调节机制。这些差异根据受影响的下游靶基因,组织的起源以及其中一些基因的表观遗传调控而变化。

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