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Mechanisms Contributing to Differential Regulation of PAX3 Downstream Target Genes in Normal Human Epidermal Melanocytes versus Melanoma Cells

机译:正常人表皮黑素细胞与黑素瘤细胞中PAX3下游靶基因差异调节的机制

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摘要

Melanoma is a highly aggressive and drug resistant form of skin cancer. It arises from melanocytes, the pigment producing cells of the skin. The formation of these melanocytes is driven by the transcription factor PAX3 early during embryonic development. As a result of alternative splicing, the PAX3 gene gives rise to eight different transcripts which encode isoforms that have different structures and activate different downstream target genes involved in pathways of cell proliferation, migration, differentiation and survival. Furthermore, post-translational modifications have also been shown to alter the functions of PAX3. We previously identified PAX3 downstream target genes in melanocytes and melanoma cells. Here we assessed the effects of PAX3 down-regulation on this panel of target genes in primary melanocytes versus melanoma cells. We show that PAX3 differentially regulates various downstream target genes involved in cell proliferation in melanoma cells compared to melanocytes. To determine mechanisms behind this differential downstream target gene regulation, we performed immunoprecipitation to assess post-translational modifications of the PAX3 protein as well as RNAseq to determine PAX3 transcript expression profiles in melanocytes compared to melanoma cells. Although PAX3 was found to be post-translationally modified, there was no qualitative difference in phosphorylation and ubiquitination between melanocytes and melanoma cells, while acetylation of PAX3 was reduced in melanoma cells. Additionally, there were differences in PAX3 transcript expression profiles between melanocytes and melanoma cells. In particular the PAX3E transcript, responsible for reducing melanocyte proliferation and increasing apoptosis, was found to be down-regulated in melanoma cells compared to melanocytes. These results suggest that alternate transcript expression profiles activate different downstream target genes leading to the melanoma phenotype.
机译:黑色素瘤是一种高度侵袭性和耐药性的皮肤癌。它起源于黑色素细胞,即皮肤的色素生成细胞。这些黑素细胞的形成是在胚胎发育早期由转录因子PAX3驱动的。作为选择性剪接的结果,PAX3基因产生八个不同的转录本,这些转录本编码具有不同结构的同工型并激活参与细胞增殖,迁移,分化和存活途径的不同下游靶基因。此外,还显示了翻译后修饰可改变PAX3的功能。我们先前在黑素细胞和黑素瘤细胞中鉴定了PAX3下游靶基因。在这里,我们评估了PAX3下调对该原代黑素细胞与黑素瘤细胞中靶基因组的影响。我们显示,PAX3与黑色素细胞相比,差异性调节参与黑色素瘤细胞增殖的各种下游靶基因。为了确定这种差异性下游靶基因调控的机制,我们进行了免疫沉淀以评估PAX3蛋白以及RNAseq的翻译后修饰,以确定与黑素瘤细胞相比黑素细胞中PAX3转录表达谱。尽管发现PAX3被翻译后修饰,但黑素细胞和黑素瘤细胞之间的磷酸化和泛素化没有质的差异,而黑素瘤细胞中PAX3的乙酰化减少。此外,黑色素细胞和黑色素瘤细胞之间的PAX3转录表达谱存在差异。特别地,发现负责减少黑素细胞增殖和增加凋亡的PAX3E转录物与黑素细胞相比在黑素瘤细胞中被下调。这些结果表明,备选的转录表达谱可激活导致黑色素瘤表型的不同下游靶基因。

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