Characterization of a new trabectedin‐resistant myxoid liposarcoma cell line that shows collateral sensitivity to methylating agents

小梁 癌症研究 核苷酸切除修复 生物 发起人 分子生物学 粘液样脂肪肉瘤 DNA修复 脂肪肉瘤 基因 基因表达 遗传学 医学 软组织肉瘤 病理 肉瘤
作者
Sarah Uboldi,Sergio Bernasconi,Michela Romano,Sergio Marchini,Ilaria Fuso Nerini,Giovanna Damia,Monica Ganzinelli,Elena Marangon,F. Sala,Luca Clivio,Giovanna Chiorino,Silvia Di Giandomenico,Mariano Rocchi,Oronzo Capozzi,G P Margison,Amanda J. Watson,Anna Maria Caccuri,Anna Pastore,Andrea Fossati,Roberto Mantovani,Federica Grosso,Juan Carlos Tercero,Eugenio Erba,Maurizio D’Incalci
出处
期刊:International Journal of Cancer [Wiley]
卷期号:131 (1): 59-69 被引量:25
标识
DOI:10.1002/ijc.26340
摘要

Abstract Myxoid Liposarcomas (MLS), characterized by the expression of FUS‐CHOP fusion gene are clinically very sensitive to the DNA binding antitumor agent, trabectedin. However, resistance eventually occurs, preventing disease eradication. To investigate the mechanisms of resistance, a trabectedin resistant cell line, 402‐91/ET, was developed. The resistance to trabectedin was not related to the expression of MDR related proteins, uptake/efflux of trabectedin or GSH levels that were similar in parental and resistant cells. The 402‐91/ET cells were hypersensitive to UV light because of a nucleotide excision repair defect: XPG complementation decreased sensitivity to UV rays, but only partially to trabectedin. 402‐91/ET cells showed collateral sensitivity to temozolomide due to the lack of O 6 ‐methylguanine‐DNA‐methyltransferase (MGMT) activity, related to the hypermethylation of MGMT promoter. In 402‐91 cells chromatin immunoprecipitation (ChIP) assays showed that FUS‐CHOP was bound to the PTX3 and FN1 gene promoters, as previously described, and trabectedin caused FUS‐CHOP detachment from DNA. Here we report that, in contrast, in 402‐91/ET cells, FUS‐CHOP was not bound to these promoters. Differences in the modulation of transcription of genes involved in different pathways including signal transduction, apoptosis and stress response between the two cell lines were found. Trabectedin activates the transcription of genes involved in the adipogenic‐program such as c/EBPα and β, in 402‐91 but not in 402‐91/ET cell lines. The collateral sensitivity of 402‐91/ET to temozolomide provides the rationale to investigate the potential use of methylating agents in MLS patients resistant to trabectedin.
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