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首页> 外文期刊>British Journal of Cancer >Elevated Bmi-1 expression is associated with dysplastic cell transformation during oral carcinogenesis and is required for cancer cell replication and survival
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Elevated Bmi-1 expression is associated with dysplastic cell transformation during oral carcinogenesis and is required for cancer cell replication and survival

机译:Bmi-1表达升高与口腔癌发生过程中发育异常的细胞转化有关,是癌细胞复制和生存所必需的

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摘要

Bmi-1 is a polycomb group protein that was identified as c-myc cooperating oncogene in murine lymphomagenesis. The current study was undertaken to determine the role of Bmi-1 in human oral carcinogenesis. Bmi-1 protein and RNA expression levels were markedly enhanced in the cells of oral squamous cell carcinomas (OSCC) compared with that of normal human oral keratinocytes (NHOK). Enhanced-Bmi-1 expression was also detected in situ in the archived oral mucosal tissues with cancerous and precancerous histopathology, including that of mild epithelial dysplasia. Thus, Bmi-1 expression occurs at a very early stage in oral carcinogenesis. To determine the biological role of Bmi-1 in cell proliferation, endogenous Bmi-1 was knocked down in actively proliferating SCC4 cells and NHOK by RNA interference. After Bmi-1 knockdown, cell replication was severely retarded. However, the expression of p16INK4A, a known cellular target of Bmi-1, was not changed in cells with or without Bmi-1 knockdown. Furthermore, Bmi-1 knockdown in HOK-16B-BaP-T cells, in which the p16INK4A/pRb pathway was abrogated, led to immediate arrest of replication and loss of viable cells. Thus, our data suggest that Bmi-1 may act through p16INK4A-independent pathways to regulate cellular proliferation during oral cancer progression.
机译:Bmi-1是一种多梳子基团蛋白,在鼠淋巴瘤的发生中被鉴定为c-myc合作致癌基因。当前的研究是为了确定Bmi-1在人类口腔癌发生中的作用。与正常人口腔角质形成细胞(NHOK)相比,口腔鳞状细胞癌(OSCC)细胞中的Bmi-1蛋白和RNA表达水平显着提高。在存档的口腔粘膜组织中,在癌性和癌前性组织病理学(包括轻度上皮异常增生)中,原位也检测到增强的Bmi-1表达。因此,Bmi-1表达发生在口腔癌发生的非常早期。为了确定Bmi-1在细胞增殖中的生物学作用,通过RNA干扰在主动增殖的SCC4细胞和NHOK中敲低了内源性Bmi-1。 Bmi-1敲低后,细胞复制严重受阻。但是,在有或没有Bmi-1敲低的细胞中,已知的Bmi-1细胞靶标p16INK4A的表达没有改变。此外,废除p16INK4A / pRb途径的HOK-16B-BaP-T细胞中的Bmi-1敲低导致立即停止复制并丧失活细胞。因此,我们的数据表明Bmi-1可能通过不依赖p16INK4A的途径来调节口腔癌进展过程中的细胞增殖。

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