Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, University of Pecs, 2 Rokus Str, H-7624 Pecs, Hungary.
Wnt-Signalling and Biotechnology Research Group, Szentagothai Research Centre, University of Pecs, 20 Ifjusag Str, H-7624 Pecs, Hungary.
Int J Mol Sci. 2021 May 20;22(10):5384. doi: 10.3390/ijms22105384.
Lung carcinoma is still the most common malignancy worldwide. One of the major subtypes of non-small cell lung cancer (NSCLC) is adenocarcinoma (AC). As driver mutations and hence therapies differ in AC subtypes, we theorized that the expression and function of ABC drug transporters important in multidrug resistance (MDR) would correlate with characteristic driver mutations KRAS or EGFR. Cisplatin resistance (CR) was generated in A549 (KRAS) and PC9 (EGFR) cell lines and gene expression was tested. In three-dimensional (3D) multicellular aggregate cultures, both ABCB1 and ABCG2 transporters, as well as the WNT microenvironment, were investigated. ABCB1 and ABCG2 gene expression levels were different in primary AC samples and correlated with specific driver mutations. The drug transporter expression pattern of parental A549 and PC9, as well as A549-CR and PC9-CR, cell lines differed. Increased mRNA levels of ABCB1 and ABCG2 were detected in A549-CR cells, compared to parental A549, while the trend observed in the case of PC9 cells was different. Dominant alterations were observed in LEF1, RHOU and DACT1 genes of the WNT signalling pathway in a mutation-dependent manner. The study confirmed that, in lung AC-s, KRAS and EGFR driver mutations differentially affect both drug transporter expression and the cisplatin-induced WNT signalling microenvironment.
肺癌仍然是全球最常见的恶性肿瘤。非小细胞肺癌(NSCLC)的主要亚型之一是腺癌(AC)。由于驱动突变以及因此而采用的治疗方法在 AC 亚型中有所不同,我们推测在多药耐药(MDR)中起重要作用的 ABC 药物转运蛋白的表达和功能将与特征性驱动突变 KRAS 或 EGFR 相关。在 A549(KRAS)和 PC9(EGFR)细胞系中产生顺铂耐药(CR),并测试基因表达。在三维(3D)多细胞聚集培养物中,研究了 ABCB1 和 ABCG2 转运蛋白以及 WNT 微环境。原发性 AC 样本中的 ABCB1 和 ABCG2 基因表达水平不同,并与特定的驱动突变相关。亲本 A549 和 PC9 以及 A549-CR 和 PC9-CR 细胞系的药物转运蛋白表达模式不同。与亲本 A549 相比,A549-CR 细胞中 ABCB1 和 ABCG2 的 mRNA 水平升高,而 PC9 细胞中的趋势则不同。WNT 信号通路中的 LEF1、RHOU 和 DACT1 基因发生显性改变,依赖于突变。该研究证实,在肺 AC 中,KRAS 和 EGFR 驱动突变以突变依赖的方式对药物转运蛋白表达和顺铂诱导的 WNT 信号微环境产生不同的影响。