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MDM2拮抗剂nutlin-3通过E2F1和TAp73使p53基因缺失的神经母细胞瘤细胞对阿霉素敏感。

The MDM2 antagonist nutlin-3 sensitizes p53-null neuroblastoma cells to doxorubicin via E2F1 and TAp73.

作者信息

Peirce Susan K, Findley Harry W

机构信息

Department of Pediatrics, Division of Hematology and Oncology, Aflac Cancer Center and Blood Disorders Service, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Int J Oncol. 2009 May;34(5):1395-402.

Abstract

Neuroblastoma (NB) is a primitive neuroectodermal tumor and the second most common solid tumor in children. NB exhibits heterogeneous behavior and spontaneous regression can occur in patients under 12 months of age. Response to treatment is both age- and stage-specific; however, patients over 1 year of age are generally considered high risk. NB tumors from these patients are often characterized by alterations in p53 expression and murine double minute (MDM2) activity with concomitant resistance to chemotherapy. We evaluated the ability of nutlin-3 to sensitize a p53-null and doxorubicin-resistant NB cell line, LA155N, to doxorubicin. Nutlin-3 treatment upregulated TAp73 and E2F1 protein levels. It potentiated the ability of doxorubicin to block cell proliferation and activate apoptosis and TAp73 knockdown resulted in a reduction of this sensitization. Additionally, PUMA expression was induced by the combination treatment, but reduced by knockdown of either TAp73 or E2F1. We conclude that, following nutlin-3 treatment, TAp73 and E2F1 are released from MDM2 and activated by doxorubicin to induce PUMA and apoptosis. This study addresses p53-independent mechanisms of nutlin-3 action in chemoresistant NB, especially in combination with chemotherapeutics. We believe that this model has strong clinical relevance for chemoresistant and p53 dysfunctional NB.

摘要

神经母细胞瘤(NB)是一种原始神经外胚层肿瘤,是儿童中第二常见的实体瘤。NB表现出异质性行为,12个月以下的患者可能会出现自发消退。对治疗的反应具有年龄和阶段特异性;然而,1岁以上的患者通常被认为是高危患者。这些患者的NB肿瘤通常具有p53表达改变和鼠双微体(MDM2)活性改变,并伴有对化疗的耐药性。我们评估了nutlin-3使p53缺失且对多柔比星耐药的NB细胞系LA155N对多柔比星敏感的能力。Nutlin-3处理上调了TAp73和E2F1蛋白水平。它增强了多柔比星阻断细胞增殖和激活凋亡的能力,而TAp73敲低导致这种敏感性降低。此外,联合处理诱导了PUMA表达,但TAp73或E2F1敲低则使其降低。我们得出结论,在nutlin-3处理后,TAp73和E2F1从MDM2中释放出来,并被多柔比星激活以诱导PUMA和凋亡。本研究探讨了nutlin-3在化疗耐药NB中,尤其是与化疗药物联合使用时的p53非依赖性作用机制。我们认为该模型对化疗耐药和p53功能失调的NB具有很强的临床相关性。

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