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SIRT1 and circadian gene expression in pancreatic ductal adenocarcinoma: Effect of starvation

机译:SIRT1和昼夜节律基因表达在胰腺导管腺癌:饥饿的影响。

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Pancreatic cancer (PC), the fourth leading cause of cancer-related deaths, is characterized by high aggressiveness and resistance to chemotherapy. Pancreatic carcinogenesis is kept going by derangement of essential cell processes, such as proliferation, apoptosis, metabolism and autophagy, characterized by rhythmic variations with 24-h periodicity driven by the biological clock. We assessed the expression of the circadian genes ARNLT, ARNLT2, CLOCK, PER1, PER2, PER3, CRY1, CRY2 and the starvation-activated histone/protein deacetylase SIRT1 in 34 matched tumor and non-tumor tissue specimens of PC patients, and evaluated in PC derived cell lines if the modulation of SIRT1 expression through starvation could influence the temporal pattern of expression of the circadian genes. We found a significant down-regulation of ARNLT (p = 0.015), CRY1 (p = 0.013), CRY2 (p = 0.001), PER1 (p < 0.0001), PER2 (p < 0.001), PER3 (p = 0.001) and SIRT1 (p = 0.017) in PC specimens. PER3 and CRY2 expression levels were lower in patients with jaundice at diagnosis (<0.05). Having adjusted for age, adjuvant therapy and tumor stage, we evidenced that patients with higher PER2 and lower SIRT1 expression levels showed lower mortality (p = 0.028). Levels and temporal patterns of expression of many circadian genes and SIRT1 significantly changed upon serum starvation in vitro, with differences among four different PC cell lines examined (BXPC3, CFPAC, MIA-PaCa-2 and PANC-1). Serum deprivation induced changes of the overall mean level of the wave and amplitude, lengthened or shortened the cycle time and phase-advanced or phase-delayed the rhythmic oscillation depending on the gene and the PC cell line examined. In conclusion, a severe deregulation of expression of SIRT1 and circadian genes was evidenced in the cancer specimens of PC patients, and starvation influenced gene expression in PC cell lines, suggesting that the altered interplay between SIRT1 and the core circadian proteins could represent a crucial player in the process of pancreatic carcinogenesis.
机译:胰腺癌(PC)是癌症相关死亡的第四个主要原因,其特征是具有高度的侵略性和对化学疗法的抵抗力。胰腺癌的发生通过细胞增殖,凋亡,新陈代谢和自噬等基本细胞过程的紊乱而得以继续进行,其特征是生物钟驱动着以24小时为周期的节律性变化。我们评估了昼夜节律基因ARNLT,ARNLT2,CLOCK,PER1,PER2,PER3,CRY1,CRY2和饥饿激活的组蛋白/蛋白质脱乙酰基酶SIRT1在34例匹配的PC和PC癌患者标本中的表达,并在如果通过饥饿调节SIRT1表达可以影响昼夜节律基因表达的时间模式,则PC衍生的细胞系。我们发现ARNLT(p = 0.015),CRY1(p = 0.013),CRY2(p = 0.001),PER1(p <0.0001),PER2(p <0.001),PER3(p = 0.001)和ARNLT显着下调。 PC标本中的SIRT1(p = 0.017)。黄疸患者的PER3和CRY2表达水平在诊断时较低(<0.05)。在调整了年龄,辅助治疗和肿瘤分期后,我们证明具有较高PER2和较低SIRT1表达水平的患者显示出较低的死亡率(p = 0.028)。在体外血清饥饿时,许多昼夜节律基因和SIRT1的表达水平和时间模式发生了显着变化,在四种不同的PC细胞系(BXPC3,CFPAC,MIA-PaCa-2和PANC-1)之间存在差异。血清剥夺引起总的平均波形水平和振幅的变化,延长或缩短周期时间,并且根据检查的基因和PC细胞系,相位振荡的相位提前或延迟。总之,在PC患者的癌症标本中,SIRT1和昼夜节律基因的表达严重失调,并且饥饿影响了PC细胞系中的基因表达,表明SIRT1与核心昼夜节律蛋白质之间相互作用的改变可能是一个关键的参与者。在胰腺癌变过程中。

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