Miroschnikov Natalia, Dräger Oliver, Van Meenen Dario, Metz Klaus, Budeus Bettina, Dünker Nicole, Busch Maike Anna
Institute for Anatomy II, Department of Neuroanatomy, Center for Translational Neuro- and Behavioral Sciences (C-TNBS), University of Duisburg-Essen, Medical Faculty, Duisburg, Germany.
Institute for Cellular Neurophysiology, University of Bielefeld, Medical Faculty, Bielefeld, Germany.
J Oncol. 2023 Mar 8;2023:2270097. doi: 10.1155/2023/2270097. eCollection 2023.
The chemotherapy of retinoblastoma (RB), a malignant ocular childhood disease, is often limited by the development of resistance against commonly used drugs. We identified inositol polyphosphate 4-phosphatase type II (INPP4B) as a differentially regulated gene in etoposide-resistant RB cell lines, potentially involved in the development of RB resistances. INPP4B is controversially discussed as a tumor suppressor and an oncogenic driver in various cancers, but its role in retinoblastoma in general and chemoresistant RB in particular is yet unknown. In the study presented, we investigated the expression of INPP4B in RB cell lines and patients and analyzed the effect of INPP4B overexpression on etoposide resistant RB cell growth and . INPP4B mRNA levels were significantly downregulated in RB cells lines compared to the healthy human retina, with even lower expression levels in etoposide-resistant compared to the sensitive cell lines. Besides, a significant increase in INPP4B expression was observed in chemotherapy-treated RB tumor patient samples compared to untreated tumors. INPP4B overexpression in etoposide-resistant RB cells resulted in a significant reduction in cell viability with reduced growth, proliferation, anchorage-independent growth, and tumor formation. Caspase-3/7-mediated apoptosis was concomitantly increased, suggesting a tumor suppressive role of INPP4B in chemoresistant RB cells. No changes in AKT signaling were discernible, but p-SGK3 levels increased following INPP4B overexpression, indicating a potential regulation of SGK3 signaling in etoposide-resistant RB cells. RNAseq analysis of INPP4B overexpressing, etoposide-resistant RB cell lines revealed differentially regulated genes involved in cancer progression, mirroring observed and effects of INPP4B overexpression and strengthening INPP4B's importance for cell growth control and tumorigenicity.
视网膜母细胞瘤(RB)是一种儿童期眼部恶性疾病,其化疗常常受到对常用药物耐药性发展的限制。我们发现肌醇多磷酸4-磷酸酶II型(INPP4B)是在依托泊苷耐药的RB细胞系中差异调节的基因,可能参与RB耐药性的发展。INPP4B在各种癌症中作为肿瘤抑制因子和致癌驱动因子存在争议,但它在视网膜母细胞瘤总体,尤其是化疗耐药的RB中的作用尚不清楚。在本研究中,我们调查了INPP4B在RB细胞系和患者中的表达,并分析了INPP4B过表达对依托泊苷耐药的RB细胞生长的影响。与健康人视网膜相比,RB细胞系中INPP4B mRNA水平显著下调,与敏感细胞系相比,依托泊苷耐药细胞系中的表达水平更低。此外,与未治疗的肿瘤相比,化疗治疗的RB肿瘤患者样本中观察到INPP4B表达显著增加。依托泊苷耐药的RB细胞中INPP4B过表达导致细胞活力显著降低,生长、增殖、非锚定依赖性生长和肿瘤形成减少。半胱天冬酶-3/7介导的凋亡同时增加,表明INPP4B在化疗耐药的RB细胞中具有肿瘤抑制作用。未发现AKT信号传导有变化,但INPP4B过表达后p-SGK3水平升高,表明在依托泊苷耐药的RB细胞中SGK3信号传导可能受到调节。对INPP4B过表达的依托泊苷耐药RB细胞系进行RNA测序分析,发现参与癌症进展的差异调节基因,反映了观察到的INPP4B过表达的影响,并强化了INPP4B对细胞生长控制和肿瘤发生的重要性。