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Inhibition of HMGI-C protein synthesis suppresses retrovirally induced neoplastic transformation of rat thyroid cells.

机译:HMGI-C蛋白合成的抑制作用抑制了逆转录病毒诱导的大鼠甲状腺细胞的肿瘤转化。

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摘要

Elevated expression of the three high-mobility group I (HMGI) proteins (HMGI, HMGY, and HMGI-C) has previously been correlated with the presence of a highly malignant phenotype in epithelial and fibroblastic rat thyroid cells and in experimental thyroid, lung, mammary, and skin carcinomas. Northern (RNA) blot and run-on analyses demonstrated that the induction of HMGI genes in transformed thyroid cells occurs at the transcriptional level. An antisense methodology to block HMGI-C protein synthesis was then used to analyze the role of this protein in the process of thyroid cell transformation. Transfection of an antisense construct for the HMGI-C cDNA into normal thyroid cells, followed by infection with transforming myeloproliferative sarcoma virus or Kirsten murine sarcoma virus, generated cell lines that expressed significant levels of the retroviral transforming oncogenes v-mos or v-ras-Ki and removed the dependency on thyroid-stimulating hormones. However, in contrast with untransfected cells or cells transfected with the sense construct, those containing the antisense construct did not demonstrate the appearance of any malignant phenotypic markers (growth in soft agar and tumorigenicity in athymic mice). A great reduction of the HMGI-C protein levels and the absence of the HMGI(Y) proteins was observed in the HMGI-C antisense-transfected, virally infected cells. Therefore, the HMGI-C protein seems to play a key role in the transformation of these thyroid cells.
机译:先前已将三种高流动性I组(HMGI)蛋白(HMGI,HMGY和HMGI-C)的表达升高与上皮和成纤维细胞大鼠甲状腺细胞以及实验性甲状腺,肺,乳腺和皮肤癌。 Northern(RNA)印迹和连续分析表明,转化甲状腺细胞中HMGI基因的诱导发生在转录水平。然后使用反义方法来阻断HMGI-C蛋白的合成,以分析该蛋白在甲状腺细胞转化过程中的作用。将HMGI-C cDNA的反义构建体转染到正常的甲状腺细胞中,然后感染转化性骨髓增生肉瘤病毒或Kirsten鼠肉瘤病毒,从而产生表达显着水平的逆转录病毒转化癌基因v-mos或v-ras-的细胞系。 Ki并消除了对促甲状腺激素的依赖。然而,与未转染的细胞或经有义构建体转染的细胞相比,那些含有反义构建体的细胞没有表现出任何恶性表型标记的出现(在软琼脂中生长和在无胸腺小鼠中具有致瘤性)。在HMGI-C反义转染的病毒感染细胞中,HMGI-C蛋白水平大大降低,而HMGI(Y)蛋白不存在。因此,HMGI-C蛋白似乎在这些甲状腺细胞的转化中起关键作用。

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