Impact of developmental state, p53 status, and interferon signaling on glioblastoma cell response to radiation and temozolomide treatment.

IF 2.6 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES PLoS ONE Pub Date : 2025-02-07 eCollection Date: 2025-01-01 DOI:10.1371/journal.pone.0315171
Artem Berezovsky, Oluwademilade Nuga, Indrani Datta, Kimberly Bergman, Thais Sabedot, Katherine Gurdziel, Susan Irtenkauf, Laura Hasselbach, Yuling Meng, Claudius Mueller, Emanuel F Petricoin, Stephen Brown, Neeraja Purandare, Sidhesh Aras, Tom Mikkelsen, Laila Poisson, Houtan Noushmehr, Douglas Ruden, Ana C deCarvalho
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Abstract

Glioblastoma (GBM) tumors exhibit extensive genomic, epigenomic, and transcriptional diversity, with significant intratumoral heterogeneity, complicating standard treatment approaches involving radiation (RT) and the DNA-alkylating agent temozolomide (TMZ). In this study, we employed an integrative multi-omics approach, including targeted proteomics, transcriptomics, genomics, and DNA methylation profiling, to investigate the response of a representative panel of GBM patient-derived cancer stem cells (CSCs) to astrocytic differentiation and RT and TMZ treatments. Differentiated CSC progenies retained the expression of key stemness genes and survival pathways, while activating the BMP-Smad signaling pathway and upregulating extracellular matrix components. This was associated with increased resistance to TMZ, though not to RT, across all models. We identified TP53 status as a critical determinant of transcriptional response to both RT and TMZ, which was also modulated by the differentiation state and treatment modality in wildtype (wt) p53 GBM cells. Both mutant and wt p53 models exhibited significant activation of the DNA-damage associated interferon (IFN) response in CSCs and differentiated cells, implicating this pathway in the GBM response to therapy. We observed that activation of NF-κB was positively correlated with the levels of O-6-methylguanine-DNA methyltransferase (MGMT) protein, a direct DNA repair enzyme leading to TMZ resistance, regardless of MGMT promoter methylation status, further supporting the clinical potential for inhibition of NF-kB signaling in GBM treatment. Our integrative analysis of the impact of GBM cell developmental states, in the context of genomic and molecular diversity of patient-derived models, provides valuable insights for pre-clinical studies aimed at optimizing treatment strategies.

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发育状态、p53状态和干扰素信号对胶质母细胞瘤细胞对放射和替莫唑胺治疗反应的影响
胶质母细胞瘤(GBM)肿瘤表现出广泛的基因组、表观基因组和转录多样性,具有显著的肿瘤内异质性,使放射治疗(RT)和dna烷基化剂替莫唑胺(TMZ)等标准治疗方法复杂化。在这项研究中,我们采用了综合多组学方法,包括靶向蛋白质组学、转录组学、基因组学和DNA甲基化分析,来研究一组具有代表性的GBM患者来源的癌症干细胞(CSCs)对星形细胞分化和RT和TMZ治疗的反应。分化后的CSC后代保留了关键干性基因和存活途径的表达,同时激活BMP-Smad信号通路,上调细胞外基质成分。这与所有模型对TMZ的抵抗力增加有关,尽管对RT没有抵抗力。我们发现TP53状态是RT和TMZ转录反应的关键决定因素,它也受到野生型(wt) p53 GBM细胞的分化状态和处理方式的调节。突变型和wt型p53模型在CSCs和分化细胞中均表现出显著的dna损伤相关干扰素(IFN)反应激活,暗示该途径参与了GBM对治疗的反应。我们观察到NF-κB的激活与o -6-甲基鸟嘌呤-DNA甲基转移酶(MGMT)蛋白水平呈正相关,MGMT是一种直接导致TMZ抗性的DNA修复酶,无论MGMT启动子甲基化状态如何,这进一步支持了在GBM治疗中抑制NF- kb信号传导的临床潜力。我们在患者衍生模型的基因组和分子多样性背景下,对GBM细胞发育状态的影响进行了综合分析,为旨在优化治疗策略的临床前研究提供了有价值的见解。
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来源期刊
PLoS ONE
PLoS ONE 生物-生物学
CiteScore
6.20
自引率
5.40%
发文量
14242
审稿时长
3.7 months
期刊介绍: PLOS ONE is an international, peer-reviewed, open-access, online publication. PLOS ONE welcomes reports on primary research from any scientific discipline. It provides: * Open-access—freely accessible online, authors retain copyright * Fast publication times * Peer review by expert, practicing researchers * Post-publication tools to indicate quality and impact * Community-based dialogue on articles * Worldwide media coverage
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