人胶质瘤细胞中siRNA下调PATZ1基因增加其对凋亡刺激的敏感性。

Cancer therapy Pub Date : 2008-01-01
Richard Tritz, Barbara M Mueller, Michelle J Hickey, Amy H Lin, German G Gomez, Philipp Hadwiger, Dinah W Y Sah, Leslie Muldoon, Edward A Neuwelt, Carol A Kruse
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引用次数: 0

摘要

PATZ1基因编码一种转录因子,该转录因子属于BTB/POZ组转录调节因子,并被认为是一种转录抑制因子。我们从胶质瘤细胞系中克隆cDNA,发现它们表达PATZ1的转录变体2。我们设计了一种针对PATZ1的特异性siRNA,并通过定量PCR检测发现,该siRNA(而不是对照随机siRNA)降低了胶质瘤细胞中PATZ1的表达。在用促凋亡FasL培养的人胶质瘤细胞系中,通过MTT比色测定,与随机siRNA转染的细胞相比,转染PATZ1 siRNA的细胞数量减少。进一步的研究表明,在10-08-MG、U-251MG、U-87MG和T98G细胞中,与可溶性FasL孵育后,PATZ1 siRNA显著增加了细胞凋亡,这是吖啶橙/溴化乙啶凋亡实验的结果。通过细胞凋亡特异性cDNA芯片,我们进一步证明了siRNA下调PATZ1可导致U-373MG细胞中死亡受体促凋亡基因(包括caspase 8和死亡受体5 (DR5))的上调。由于DR5是TRAIL的受体,我们测试了PATZ1下调是否也使细胞对TRAIL诱导的凋亡敏感,发现PATZ1 siRNA(而不是对照siRNA)使U-251MG和T98G胶质瘤细胞对TRAIL诱导的凋亡敏感。总之,这些数据证明了转录因子PATZ1在赋予细胞凋亡抗性中的未知作用,并表明调节PATZ1表达可能是胶质瘤的一种治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
siRNA Down-regulation of the PATZ1 Gene in Human Glioma Cells Increases Their Sensitivity to Apoptotic Stimuli.

The PATZ1 gene encodes a transcription factor that belongs to the BTB/POZ group of transcriptional regulators and has been implicated as a transcriptional repressor. We cloned cDNA from glioma cell lines and found they expressed transcript variant 2 of PATZ1. We designed a specific siRNA against PATZ1 and showed that this siRNA, but not a control randomized siRNA, reduced PATZ1 expression in glioma cells as determined by quantitative PCR. In a panel of human glioma cell lines incubated with proapoptotic FasL, those transfected with PATZ1 siRNA displayed reduced cell numbers by the MTT colorimetric assay, relative to those transfected with randomized siRNA. Further studies showed that in 10-08-MG, U-251MG, U-87MG, and T98G cells PATZ1 siRNA significantly increased apoptosis in response to incubation with soluble FasL, as shown by a morphologic acridine orange/ethidium bromide apoptotic assay. Using an apoptosis specific cDNA microarray we further demonstrated that down-regulation of PATZ1 by siRNA resulted in the upregulation of death receptor pro-apoptotic genes including caspase 8 and Death Receptor 5 (DR5) in U-373MG cells. Since DR5 is the receptor for TRAIL we tested whether PATZ1 downregulation also sensitized cells to TRAIL-induced apoptosis and found that PATZ1 siRNA, but not control siRNA, sensitized U-251MG and T98G glioma cells to TRAIL-induced apoptosis. Altogether, these data demonstrate a previously unknown role for the transcription factor PATZ1 in conferring resistance to apoptosis and indicate that modulation of PATZ1 expression may be a therapeutic strategy for gliomas.

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