Laboratório de Cultura Celular, ICB, FURG, RS, Brazil; Programa de Pós-Graduação em Ciências Fisiológicas, ICB, FURG, RS, Brazil.
Laboratório de Cultura Celular, ICB, FURG, RS, Brazil; Escola de Química e Alimentos, EQA, FURG, RS, Brazil.
Prostaglandins Other Lipid Mediat. 2021 Aug;155:106553. doi: 10.1016/j.prostaglandins.2021.106553. Epub 2021 May 8.
This study aimed to characterize the relationship between the COX2 and ALOX5 genes, as well as their link with the multidrug resistance (MDR) phenotype in sensitive (K562) and MDR (K562-Lucena and FEPS) erythroleukemia cells. For this, the inhibitors of 5-LOX (zileuton) and COX-2 (acetylsalicylic acid-ASA) and cells with the silenced ABCB1 gene were used. The treatment with ASA caused an increase in the gene expression of COX2 and ABCB1 in both MDR cell lines, and a decrease in the expression of ALOX5 in the FEPS cells. Silencing the ABCB1 gene induced a decrease in COX2 expression and an increase in the ALOX5 gene. Treatment with zileuton did not alter the expression of COX2 and ABCB1. Cytometry data showed that there was an increase in ABCB1 protein expression after exposure to ASA. In addition, the increased activity of ABCB1 in the K562-Lucena cell line indicates that ASA may be a substrate for this efflux pump, corroborating the molecular docking that showed that ASA can bind to ABCB1. Regardless of the genetic alteration in COX2 and ABCB1, the direct relationship between these genes and the inverse relationship with ALOX5 remained in the MDR cell lines. We assume that ABCB1 can play a regulatory role in COX2 and ALOX5 during the transformation of the parental cell line K562, explaining the increased gene expression of COX2 and decreased ALOX5 in the MDR cell lines.
本研究旨在探讨 COX2 和 ALOX5 基因之间的关系,以及它们与敏感(K562)和多药耐药(K562-Lucena 和 FEPS)红细胞白血病细胞的多药耐药表型之间的联系。为此,使用了 5-LOX(齐留通)和 COX-2(乙酰水杨酸-ASA)抑制剂以及沉默 ABCB1 基因的细胞。ASA 处理导致两种 MDR 细胞系中 COX2 和 ABCB1 基因的表达增加,而 FEPS 细胞中 ALOX5 的表达减少。沉默 ABCB1 基因诱导 COX2 表达减少和 ALOX5 基因表达增加。齐留通处理不改变 COX2 和 ABCB1 的表达。细胞仪数据显示,暴露于 ASA 后 ABCB1 蛋白表达增加。此外,K562-Lucena 细胞系中 ABCB1 活性的增加表明 ASA 可能是该外排泵的底物,这与分子对接一致,表明 ASA 可以与 ABCB1 结合。无论 COX2 和 ABCB1 的遗传改变如何,这些基因之间的直接关系以及与 ALOX5 的反相关关系在 MDR 细胞系中仍然存在。我们假设 ABCB1 可以在亲本细胞系 K562 的转化过程中对 COX2 和 ALOX5 发挥调节作用,解释了 MDR 细胞系中 COX2 基因表达增加和 ALOX5 基因表达减少。