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首页> 外文期刊>Cancer Cell International >Inhibitor of caspase-activated DNase expression enhances caspase-activated DNase expression and inhibits oxidative stress-induced chromosome breaks at the mixed lineage leukaemia gene in nasopharyngeal carcinoma cells
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Inhibitor of caspase-activated DNase expression enhances caspase-activated DNase expression and inhibits oxidative stress-induced chromosome breaks at the mixed lineage leukaemia gene in nasopharyngeal carcinoma cells

机译:半胱天冬酶激活的DNase表达抑制剂增强了胱天蛋白激活的DNase表达,并抑制鼻咽癌细胞混合谱系白血病基因的氧化应激诱导的染色体断裂

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Nasopharyngeal carcinoma (NPC) is commonly found in Asia, especially among the Chinese ethnic group. Chromosome rearrangements are common among NPC patients. Although the mechanism underlying the chromosome rearrangements in NPC is unclear, various mechanisms including activation of caspase-activated DNase (CAD) were proposed to contribute to chromosome rearrangements in leukaemia. Activation of CAD can be initiated by multiple agents, including oxidative stress, which is well implicated in carcinogenesis. CAD is the main enzyme that causes DNA fragmentation during apoptosis, and CAD is also implicated in promoting cell differentiation. In view of the role of oxidative stress in carcinogenesis and CAD activation, and since CAD was suggested to contribute to chromosome rearrangement in leukaemia, we hypothesise that oxidative stress-induced CAD activation could be one of the mechanisms that leads to chromosome rearrangements in NPC. SUNEI cells were treated with various concentrations of H2O2 for different period of time to ensure that cells undergo H2O2-induced MLL gene cleavage. Transfections with hCAD, mCAD, mutant hCAD, or cotransfection with hCAD and mICAD, and cotransfection with mutant hCAD and mICAD were performed. Gene expression was confirmed by Western blotting and MLL gene cleavage was assessed by inverse polymerase chain reaction (IPCR). Treatment with H2O2 clearly induces cleavages within the MLL gene which locates at 11q23, a common deletion site in NPC. In order to investigate the role of CAD, CAD was overexpressed in SUNE1 cells, but that did not result in significant changes in H2O2-induced MLL gene cleavage. This could be because CAD requires ICAD for proper folding. Indeed, by overexpressing ICAD alone or co-expressing ICAD with CAD, Western blotting showed that CAD was expressed. In addition, ICAD overexpression also suppressed H2O2-induced MLL gene cleavage, suggesting a possible role of CAD in initiating chromosome cleavage during oxidative stress. Oxidative stress mediated by H2O2 induces cleavage of the MLL gene, most likely via the caspase-activated DNase, CAD, and CAD expression requires ICAD. Since the MLL gene is located at 11q23, a common deletion site in NPC, thus stress-induced CAD activation may represent one of the mechanisms leading to chromosome rearrangement in NPC.
机译:鼻咽癌(NPC)通常在亚洲发现,特别是中国民族。 NPC患者中常见的染色体重排。虽然NPC中染色体重排的机制尚不清楚,但提出了各种机制,包括激活胱天蛋白激活的DNase(CAD)的激活,以有助于白血病染色体重排。 CAD的活化可以由多种试剂引发,包括氧化应激,其含有良好的致癌作用。 CAD是在凋亡期间导致DNA碎片的主要酶,并且CAD也涉及促进细胞分化。鉴于氧化胁迫在致癌物和CAD活化中的作用,并且由于CAD提示有助于白血病中的染色体重排,我们假设氧化应激诱导的CAD活化可以是导致NPC中染色体重排的机制之一。在不同的时间内用各种浓度的H 2 O 2处理阳光细胞以确保细胞经历H2O2诱导的MLL基因裂解。用HCAD,MCAD,突变HCAD或与HCAD和MICAD分类的转染,并进行与突变HCAD和MICAD的COT转染。通过蛋白质印迹确认基因表达,并通过反相聚合酶链反应(IPCR)评估MLL基因裂解。用H 2 O 2治疗清楚地诱导MLL基因内的切割,该裂解位于11Q23,在NPC中的常见缺失位点。为了探讨CAD的作用,CAD在SUNE1细胞中过表达,但没有导致H2O2诱导的MLL基因切割的显着变化。这可能是因为CAD需要ICAD正确折叠。实际上,通过单独过度表达ICAD或与CAD共同表达ICAD,Western Blotting表达了CAD。此外,ICAD过表达也抑制了H2O2诱导的MLL基因裂解,表明CAD在氧化应激期间启动染色体裂解中的可能作用。由H 2 O 2介导的氧化应激诱导MLL基因的切割,最有可能通过Caspase-asspase-活化的DNase,CAD和CAD表达需要ICAD。由于MLL基因位于11Q23,因此NPC中的常见缺失位点,因此应力诱导的CAD活化可以代表导致NPC中染色体重排的机制之一。

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