National Institute for Cellular Biotechnology, Dublin City University, D09 NR58 Dublin, Ireland.
SSPC, The Science Foundation Ireland Research Centre for Pharmaceuticals, V94 T9PX Limerick, Ireland.
Biomolecules. 2022 Oct 1;12(10):1401. doi: 10.3390/biom12101401.
The development of drug resistance in lung cancer is a major clinical challenge, leading to a 5-year survival rate of only 18%. Therefore, unravelling the mechanisms of drug resistance and developing novel therapeutic strategies is of crucial importance. This study systematically explores the novel biomarkers of drug resistance using a lung cancer model (DLKP) with a series of drug-resistant variants. In-depth label-free quantitative mass spectrometry-based proteomics and gene ontology analysis shows that parental DLKP cells significantly differ from drug-resistant variants, and the cellular proteome changes even among the drug-resistant subpopulations. Overall, ABC transporter proteins and lipid metabolism were determined to play a significant role in the formation of drug resistance in DKLP cells. A series of membrane-related proteins such as HMOX1, TMB1, EPHX2 and NEU1 were identified to be correlated with levels of drug resistance in the DLKP subpopulations. The study also showed enrichment in biological processes and molecular functions such as drug metabolism, cellular response to the drug and drug binding. In gene ontology analysis, 18 proteins were determined to be positively or negatively correlated with resistance levels. Overall, 34 proteins which potentially have a therapeutic and diagnostic value were identified.
肺癌耐药性的发展是一个主要的临床挑战,导致 5 年生存率仅为 18%。因此,揭示耐药性的机制并开发新的治疗策略至关重要。本研究使用一系列耐药变体的肺癌模型(DLKP)系统地探索了耐药的新生物标志物。基于深度无标记定量质谱的蛋白质组学和基因本体分析表明,亲本 DLKP 细胞与耐药变体有显著差异,即使在耐药亚群中,细胞蛋白质组也发生了变化。总的来说,ABC 转运蛋白和脂代谢被确定在 DKLP 细胞耐药形成中起重要作用。一系列膜相关蛋白,如 HMOX1、TMB1、EPHX2 和 NEU1,被鉴定与 DLKP 亚群的耐药水平相关。该研究还表明,在生物过程和分子功能方面存在富集,如药物代谢、细胞对药物的反应和药物结合。在基因本体分析中,确定了 18 种与耐药水平呈正相关或负相关的蛋白质。总的来说,鉴定出了 34 种具有潜在治疗和诊断价值的蛋白质。