首页> 外文期刊>American Journal of Pathology >Transgene Expression and Repression in Transgenic Rats Bearing the Phosphoenolpyruvate Carboxykinase-Simian Virus 40 T Antigen or the Phosphoenolpyruvate Carboxykinase-Transforming Growth Factor-{alpha} Constructs
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Transgene Expression and Repression in Transgenic Rats Bearing the Phosphoenolpyruvate Carboxykinase-Simian Virus 40 T Antigen or the Phosphoenolpyruvate Carboxykinase-Transforming Growth Factor-{alpha} Constructs

机译:携带磷酸烯醇丙酮酸羧激酶-猿猴病毒40 T抗原或磷酸烯醇丙酮酸羧激酶转化生长因子-{alpha}构建体的转基因大鼠中的转基因表达和抑制

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摘要

Transgenic Sprague-Dawley rats expressing either human transforming growth factor- (TGF) or simian virus 40 large and small T antigen (TAg), each under the control of the phosphoenolpyruvate carboxykinase (PEPCK) promoter, were developed as an approach to the study of the promotion of hepatocarcinogenesis in the presence of a transgene regulatable by diet and/or hormones. Five lines of PEPCK-TGF transgenic rats were established, each genetic line containing from one to several copies of the transgene per haploid genome. Two PEPCK-TAg transgenic founder rats were obtained, each with multiple copies of the transgene. Expression of the transgene was undetectable in the TGF transgenic rats and could not be induced when the animals were placed on a high-protein, low-carbohydrate diet. The transgene was found to be highly methylated in all of these lines. No pathological alterations in the liver and intestine were observed at any time (up to 2 years) during the lives of these rats. One line of transgenic rats expressing the PEPCK-TAg transgene developed pancreatic islet cell hyperplasias and carcinomas, with few normal islets evident in the pancreas. This transgene is integrated as a hypomethylated tandem array of 10 to 12 copies on chromosome 8q11. Expression of large T antigen is highest in pancreatic neoplasms, but is also detectable in the normal brain, kidney, and liver. Mortality is most rapid in males, starting at 5 months of age and reaching 100% by 8 months. Morphologically, islet cell differentiation in the tumors ranges from poor to well differentiated, with regions of necrosis and fibrosis. Spontaneous metastasis of TAg-positive tumor cells to regional lymph nodes was observed. These studies indicate the importance of DNA methylation in the repression of specific transgenes in the rat. However, the expression of the PEPCK-TAg induces neoplastic transformation in islet cells, probably late in neuroendocrine cell differentiation. T antigen expression during neoplastic development may result in a pervasive change in the islet cell growth properties with selection of a transformed phenotype as a possible requirement for cell viability.
机译:表达人类转化生长 因子-(TGF)或猿猴病毒40大和小T抗原(TAg)的转基因Sprague-Dawley大鼠,每个都在磷酸烯醇丙酮酸羧激酶的控制下 (PEPCK)启动子被开发为研究 在饮食和/或可调节饮食的转基因存在下促进肝癌发生的方法。或激素。建立了五株PEPCK-TGF转基因大鼠品系,每个基因系每个单倍体基因组包含一到几个拷贝的转基因。 两个PEPCK获得了-TAg转基因创始大鼠,每只大鼠均具有 多个拷贝的转基因。在TGF转基因大鼠中, 不能检测到转基因的表达,并且 将动物置于高蛋白,低碳水化合物的食物中并不能诱导转基因的表达。 >饮食。发现在所有这些品系的所有 中,转基因高度甲基化。在这些 大鼠的生命中的任何时间(最多2年)均未观察到肝和肠的病理变化。表达PEPCK-TAg转基因的一系转基因大鼠 发展为胰岛细胞增生和癌, 胰腺中很少见正常胰岛。此转基因 被整合为8q11染色体上10到12个拷贝的低甲基化串联阵列 。大T抗原的表达在 胰腺肿瘤中最高,但在正常脑, 肾脏和肝脏中也可检测到。男性死亡率最高,从5个月开始 ,到8个月达到100%。形态学上,肿瘤中胰岛细胞的分化范围从差到差,并具有坏死和纤维化区域。TAg阳性肿瘤的自发转移。观察到区域 淋巴结的细胞。这些研究表明,DNA甲基化在抑制 大鼠中特定转基因中的重要性。然而,PEPCK-TAg的表达在胰岛细胞中诱导肿瘤的 转化,可能在神经内分泌 细胞分化的后期。肿瘤 发育过程中的T抗原表达可能导致胰岛细胞 生长特性的普遍变化,并可能选择转化表型 。细胞活力。

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  • 来源
    《American Journal of Pathology》 |1999年第1期|183-192|共10页
  • 作者单位

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

    From the McArdle Laboratory for Cancer Research, Departments of Oncology and Pathology, The Medical School, University of Wisconsin, Madison, Wisconsin;

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  • 入库时间 2022-08-17 14:17:15

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