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Time-Qualified Patterns of Variation of PPARγ DNMT1 and DNMT3B Expression in Pancreatic Cancer Cell Lines

机译:胰腺癌细胞系中PPARγDNMT1和DNMT3B表达变化的时间限定模式

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摘要

Carcinogenesis is related to the loss of homeostatic control of cellular processes regulated by transcriptional circuits and epigenetic mechanisms. Among these, the activities of peroxisome proliferator-activated receptors (PPARs) and DNA methyltransferases (DNMTs) are crucial and intertwined. PPARγ is a key regulator of cell fate, linking nutrient sensing to transcription processes, and its expression oscillates with circadian rhythmicity. Aim of our study was to assess the periodicity of PPARγ and DNMTs in pancreatic cancer (PC). We investigated the time-related patterns of PPARG, DNMT1, and DNMT3B expression monitoring their mRNA levels by qRT-PCR at different time points over a 28-hour span in BxPC-3, CFPAC-1, PANC-1, and MIAPaCa-2 PC cells after synchronization with serum shock. PPARG and DNMT1 expression in PANC-1 cells and PPARG expression in MIAPaCa-2 cells were characterized by a 24 h period oscillation, and a borderline significant rhythm was observed for the PPARG, DNMT1, and DNMT3B expression profiles in the other cell lines. The time-qualified profiles of gene expression showed different shapes and phase relationships in the PC cell lines examined. In conclusion, PPARG and DNMTs expression is characterized by different time-qualified patterns in cell lines derived from human PC, and this heterogeneity could influence cell phenotype and human disease behaviour.
机译:癌变与失去受转录回路和表观遗传机制调控的细胞过程的稳态控制有关。其中,过氧化物酶体增殖物激活受体(PPARs)和DNA甲基转移酶(DNMTs)的活性至关重要且相互交织。 PPARγ是细胞命运的关键调节剂,将营养感应与转录过程联系起来,其表达与昼夜节律有关。我们研究的目的是评估胰腺癌(PC)中PPARγ和DNMT的周期性。我们调查了与时间相关的PPARG,DNMT1和DNMT3B表达的模式,通过qRT-PCR在BxPC-3,CFPAC-1,PANC-1和MIAPaCa-2中的28小时内的不同时间点通过qRT-PCR监测其mRNA水平PC细胞与血清休克同步后。 PANC-1细胞中的PPARG和DNMT1表达以及MIAPaCa-2细胞中的PPARG表达以24 h周期振荡为特征,在其他细胞系中观察到PPARG,DNMT1和DNMT3B表达谱的临界节律性。时间表达的基因表达谱在所检查的PC细胞系中显示出不同的形状和相位关系。总之,PPARG和DNMTs的表达具有人类PC细胞中不同时间限定模式的特征,这种异质性可能影响细胞表型和人类疾病行为。

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