INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING

Y. Raynich
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Abstract

The aim of the present study was to find out the role of Ruk/CIN85 in modulation of activities/content of key enzymes/components of glycolysis and hydrogen peroxide using as a model human NSCLC MOR wild type and resistant to drugs MOR/0.2R cells. Materials and methods. MOR (ECACC 84112312) and MOR/0.2R (ECACC 96042335), drug-resistant cell line, were cultured in the complete RPMI medium under standard conditions. Enzymes activity, content of metabolites and protein in cell extracts and the conditioned cell culture medium were estimated by spectrophotometric and fluorometric assays. Results. Using RT2-PCR it was revealed that the level of Ruk/CIN85 mRNA in drug-resistant MOR cells was 10 times higher than in parental MOR cells. The activities of lysyl oxidase (LOX) and diamine oxidase (DAO) were significantly higher in resistant cells It has been shown that these enzymes are associated with aggressiveness of tumor cells. Based on the obtained results, we draw a conclusion that observed changes in the intensity of glycolysis, amine oxidases activities and content of hydrogen peroxide in doxorubicin-resistant MOR/0.2R cells positively correlate with the expression level of the adaptor protein studied. Conclusions. In conclusion, it can be assumed that the adaptor protein Ruk/CIN85 is involved in metabolome reprogramming and may function as an important component of regulatory networks required for the acquisition of drug resistant phenotype by NSCLC cells.
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在阿霉素耐药的人非小肺腺癌细胞中,受体蛋白Ruk/CIN85的表达水平升高与其代谢重编程有关
本研究的目的是以人非小细胞肺癌MOR野生型和耐药MOR/0.2R细胞为模型,探讨Ruk/CIN85在调节糖酵解和过氧化氢的关键酶/成分的活性/含量中的作用。材料和方法。MOR(ECACC84112312)和MOR/0.2R(ECACC 96042335)是耐药细胞系,在标准条件下在完全RPMI培养基中培养。通过分光光度法和荧光法测定细胞提取物和条件细胞培养基中的酶活性、代谢产物和蛋白质含量。后果使用RT2-PCR,发现耐药MOR细胞中Ruk/CIN85mRNA的水平是亲本MOR细胞的10倍。赖氨酰氧化酶(LOX)和二胺氧化酶(DAO)的活性在耐药细胞中显著较高。研究表明,这些酶与肿瘤细胞的侵袭性有关。基于所获得的结果,我们得出结论,在阿霉素抗性MOR/0.2R细胞中观察到的糖酵解强度、胺氧化酶活性和过氧化氢含量的变化与所研究的衔接蛋白的表达水平呈正相关。结论。总之,可以假设衔接蛋白Ruk/CIN85参与代谢组重编程,并可能作为NSCLC细胞获得耐药性表型所需的调节网络的重要组成部分。
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