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急性早幼粒细胞白血病的PML-RARα蛋白在转基因小鼠中诱导肝脏癌前病变和肿瘤性病变。

The acute promyelocytic leukemia PML-RAR alpha protein induces hepatic preneoplastic and neoplastic lesions in transgenic mice.

作者信息

David G, Terris B, Marchio A, Lavau C, Dejean A

机构信息

Unité de Recombinaison et Expression Génétique, INSERM U163, UA CNRS, Institut Pasteur, Paris, France.

出版信息

Oncogene. 1997 Apr 3;14(13):1547-54. doi: 10.1038/sj.onc.1200989.

Abstract

The PML-RAR alpha hybrid protein generated by the t(15;17) translocation in acute promyelocytic leukemia (APL) is thought to play a central role in the oncogenic process. However, analysis of the oncogenic activity of the fusion protein in tissue culture assays or in mice has been hampered by its apparent toxicity in multiple murine cells. To circumvent this problem, we generated an inducible line of transgenic mice, MT135, in which the expression of PML-RAR alpha is driven by the metallothionein promoter. After 5 days zinc stimulation, 27 out of 54 mice developed hepatic preneoplasia and neoplasia including foci of basophilic hepatocytes, dysplasia and carcinoma with a significantly higher incidence of lesions in females than in males. The rapid onset of liver pathologies was dependent on overexpression of the transgene since it was not detected in noninduced transgenic animals of the same age. The PML-RAR alpha protein was always present in altered tissues at much higher levels than in the surrounding normal liver tissues. In addition, overexpression of PML-RAR alpha resulted in a strong proliferative response in the hepatocytes. We conclude that overexpression of PML-RAR alpha deregulates cell proliferation and can induce tumorigenic changes in vivo.

摘要

急性早幼粒细胞白血病(APL)中由t(15;17)易位产生的PML-RARα融合蛋白被认为在致癌过程中起核心作用。然而,在组织培养试验或小鼠中对该融合蛋白致癌活性的分析受到其在多种鼠细胞中明显毒性的阻碍。为了解决这个问题,我们构建了一种可诱导的转基因小鼠品系MT135,其中PML-RARα的表达由金属硫蛋白启动子驱动。锌刺激5天后,54只小鼠中有27只发生了肝脏癌前病变和肿瘤,包括嗜碱性肝细胞灶、发育异常和癌,雌性小鼠的病变发生率明显高于雄性。肝脏病变的快速出现依赖于转基因的过表达,因为在同年龄未诱导的转基因动物中未检测到。PML-RARα蛋白在病变组织中的含量始终比周围正常肝脏组织高得多。此外,PML-RARα的过表达导致肝细胞强烈的增殖反应。我们得出结论,PML-RARα的过表达会导致细胞增殖失调,并能在体内诱导致瘤性变化。

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