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PMID: 41708984 已发表 · ppublish 英语

Integrative multi-omics defines melanoma drug response networks and ARID1A-dependent resistance mechanisms.

Molecular systems biology ·第 22 卷 ·第 5 期 ·2026-05-00

Barker CG, Sharma S, Santos AM, Nikolakopoulos KS, Velentzas AD, Tormo-Garcia C, Sharma A, Völlmy FI, Minia A, Pliaka V, Clarke J, Altelaar M, Wright GJ, Alexopoulos LG, Stravopodis DJ, Petsalaki E

摘要

Resistance to BRAF/MAPK inhibitors is a significant challenge in melanoma treatment, driven by adaptive and acquired mechanisms allowing tumor cells to evade therapy. We explored early signaling responses to BRAF and MAPK inhibition in a BRAFV600E-sensitive melanoma cell line and a drug-resistant ARID1A-knockout (KO) derivative. ARID1A, frequently mutated in melanoma, is linked to resistance and immune evasion. Through an innovative systems biology approach integrating multi-omics datasets, we identified critical resistance mechanisms. We found that ARID1A-KO cells exhibited transcriptional rewiring, sustaining MAPK1/3 and JNK activity post-treatment, suppressing PRKD1 activation, increasing JUN activity, and disrupting PKC dynamics via elevated RTKs (e.g., EGFR, ROS1) and Ephrin receptor activity. ARID1A-KO also reduced HLA-related protein expression and enhanced extracellular matrix components, potentially limiting immune infiltration and immunotherapy efficacy. Our multi-omics analysis revealed PRKD1, JUN, and NCK1 as key resistance nodes, offering potential targets for therapeutic strategies to counter resistance in melanoma.

关键词
ARID1A Data Integration Drug Resistance Melanoma Network Analysis
文献信息
期刊
Molecular systems biology
期刊简称
Mol Syst Biol
ISSN
1744-4292
发表日期
2026-05-00
语言
英语
国家/地区
Germany
NLM ID
101235389
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