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对暴露于异环磷酰胺的p53基因缺陷型恶性纤维组织细胞瘤原代培养物中中枢调节途径的分析。

Analysis of central regulatory pathways in p53-deficient primary cultures of malignant fibrous histiocytoma exposed to ifosfamide.

作者信息

Schlott Thilo, Taubert Helge, Fayyazi Afshin, Schweyer Stefan, Bartel Frank, Korabiowska Monika, Brinck Ulrich

机构信息

Department of Pathology, Center for Pathology, Georg-August-University, D-37075 Goettingen, Germany.

出版信息

Anticancer Res. 2004 Nov-Dec;24(6):3819-29.

Abstract

Soft tissue sarcomas frequently carry p53 mutations reducing chemotherapeutical response. Especially malignant fibrous histiocytoma (MFH) reveals a reduced ifosfamide (IF) chemosensitivity when compared to other sarcoma entities. This is the first study to analyze MFH cells for the effects of IF on the expression of the pathways P16-CDK4-Rb and P14ARF-MDM2-P73 regulating cell cycle. The aim was to identify candidate genes possibly involved in the anti-apoptotic response of p53-deficient MFH cells during chemotherapy. PCR, real-time RT-PCR and confocal laser scanning microscopy were applied on primary cultures of MFH cells containing defective p53 genes. The cultures were treated with different concentrations of IF. A non-treated MFH culture served as negative control. A threshold concentration of IF (100 microM) was determined sparing the majority of the cells (99%), whereas higher IF quantities caused complete apoptosis. Data collected over a period of 48 h showed that the MFH cells surviving 100 microM IF overexpressed the kinase gene CDK4 and oncogene MDM2 by a factor of 63. A similar strong increase was observed at the protein level for both proteins. In contrast, the other proteins analyzed were not detectable. Additionally, the MFH cells induced complex patterns of MDM2 mRNA splicing and an abnormal mRNA transcript carrying a novel MDM2 missense mutation. These effects were neither observed in the non-treated culture nor in cultures completely inducing spontaneous apoptosis. Therefore, we speculate that the induction of the gene CDK4, and especially of MDM2, is involved in anti-apoptotic mechanisms of p53-negative MFH cells tolerating IF in vitro. Further experiments are necessary to test whether the novel candidate genes favor development of chemoresistance and whether MDM2 mRNA splicing variants contribute to this process in vivo.

摘要

软组织肉瘤常常携带p53突变,从而降低化疗反应。尤其是恶性纤维组织细胞瘤(MFH),与其他肉瘤实体相比,其对异环磷酰胺(IF)的化疗敏感性降低。这是第一项分析MFH细胞中IF对调节细胞周期的P16 - CDK4 - Rb和P14ARF - MDM2 - P73通路表达影响的研究。目的是鉴定可能参与p53缺陷型MFH细胞化疗期间抗凋亡反应的候选基因。对含有缺陷p53基因的MFH细胞原代培养物进行了聚合酶链反应(PCR)、实时逆转录聚合酶链反应(real - time RT - PCR)和共聚焦激光扫描显微镜检查。培养物用不同浓度的IF处理。未处理的MFH培养物用作阴性对照。确定了IF的阈值浓度(100微摩尔),可使大多数细胞(99%)存活,而更高剂量的IF会导致完全凋亡。在48小时内收集的数据表明,在100微摩尔IF处理下存活的MFH细胞中,激酶基因CDK4和癌基因MDM2的表达上调了63倍。在蛋白质水平上,这两种蛋白质也观察到了类似幅度的强烈增加。相比之下,所分析的其他蛋白质未检测到。此外,MFH细胞诱导了MDM2 mRNA剪接的复杂模式以及携带新型MDM2错义突变的异常mRNA转录本。在未处理的培养物或完全诱导自发凋亡的培养物中均未观察到这些效应。因此,我们推测基因CDK4,尤其是MDM2的诱导,参与了体外耐受IF的p53阴性MFH细胞的抗凋亡机制。需要进一步的实验来测试这些新的候选基因是否有利于化疗耐药性的发展,以及MDM2 mRNA剪接变体是否在体内促成了这一过程。

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