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首页> 外文期刊>Translational research: the journal of laboratory and clinical medicine >Silencing of telomere-binding protein adrenocortical dysplasia (ACD) homolog enhances radiosensitivity in glioblastoma cells
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Silencing of telomere-binding protein adrenocortical dysplasia (ACD) homolog enhances radiosensitivity in glioblastoma cells

机译:端粒结合蛋白肾上腺皮质发育不良(ACD)同源性的沉默增强了胶质母细胞瘤细胞的放射敏感性

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摘要

Adrenocortical dysplasia (ACD) is a shelterin protein involved in the maintenance of telomere length and in cancer radioresistance. This study investigated the expression profile of ACD in human gliomas and its role in radioresistance of glioma cells. The expression of ACD was analyzed in 62 different grades of glioma tissues and correlated with prognosis. A radioresistant cell line was generated from U87MG cells. For mechanistic studies, ACD was inhibited by small interfering RNA-targeting ACD and the effect on cell radioresistance, telomerase activity, cyclinD1, caspase-3, hTERT, and BIRC1 was evaluated. Clonogenic assay was performed after irradiation, to investigate the effect of ACD silencing on radiation sensitivity. ACD expression appeared strongly upregulated in higher grade gliomas, and its expression was significantly correlated to grading and poor prognosis. In glioma cell lines, ACD expression pattern was similar to those observed in glioma tissues. In irradiated cells, ACD expression was increased in an ionizing radiation dose-dependent manner. A higher expression of ACD was observed in the radioresistant clones than parental cells. Silencing of ACD led to the enhanced radiation sensitivity, decreased telomerase activity and cyclin D1 expression, reduced expression of BIRC1, and finally to the upregulation of caspase-3. This study represents the first report, which demonstrated the expression pattern of ACD in gliomas and its prognostic value. Our results suggested that ACD is involved in glioblastoma radioresistance, likely through the modulation of telomerase activity, proliferation, and apoptosis. ACD might represent a potential molecular biomarker and a novel therapeutic target in glioblastoma.
机译:肾上腺皮质发育不良(ACD)是一种避难蛋白,参与维持端粒长度和癌症放射侵蚀性。本研究研究了ACD在人胶质瘤中的表达谱及其在胶质瘤细胞辐射血管辐射的作用。分析ACD的表达在62种不同等级的胶质瘤组织中并与预后相关。从U87mg细胞产生放射性细胞系。对于机械研究,通过小干扰RNA靶向ACD抑制ACD,并评估对细胞辐射敏感度,端粒酶活性,CyclinD1,Caspase-3,HTERT和BIRC1的影响。辐照后进行克隆源测定,研究ACD沉默对辐射敏感性的影响。 ACD表达出现在较高级的胶质瘤中强烈上调,其表达与分级和预后差显着相关。在胶质瘤细胞系中,ACD表达模式类似于在胶质瘤组织中观察到的。在辐照细胞中,以电离辐射剂量依赖性方式增加ACD表达。在远离硫化剂克隆的克隆中观察到较高的ACD表达比亲本细胞。 ACD的沉默导致增强的辐射敏感性,降低的端粒酶活性和细胞周期蛋白D1表达,降低了BiRC1的表达,最后达到了Caspase-3的上调。本研究代表了第一报告,其证明了胶质瘤中ACD的表达模式及其预后价值。我们的研究结果表明,可能通过调节端粒酶活性,增殖和凋亡,ACD参与胶质母细胞瘤辐射敏感度。 ACD可能代表潜在的分子生物标志物和胶质母细胞瘤的新疗法靶标。

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    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Clinical and Experimental Medicine University of Messina;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Human Pathology University of Messina;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Clinical and Experimental Medicine University of Messina;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Biomedical Dental Sciences and of Morphological and Functional Images University of;

    Department of Clinical and Experimental Medicine University of Messina;

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  • 正文语种 eng
  • 中图分类 医药、卫生;
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