首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Pituitary Hyperplasia in Glycoprotein Hormone Alpha Subunit- p18INK4C- and p27kip-1-Null Mice
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Pituitary Hyperplasia in Glycoprotein Hormone Alpha Subunit- p18INK4C- and p27kip-1-Null Mice

机译:糖蛋白激素α亚基-p18INK4C-和p27kip-1-Null小鼠的垂体增生

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摘要

Most spontaneously developing hyperplastic and neoplastic lesions of the pituitary occur in the anterior pituitary. Targeted disruption of various cell-cycle proteins, including Rb, p27kip1 (p27), and p18INK4c (p18), is associated with intermediate lobe pituitary hyperplasia. To develop a model of anterior pituitary proliferation to study the pathogenesis of pituitary tumors, we crossed the glycoprotein hormone α-subunit (αSU)-null mice that develop thyroid-stimulating hormone (TSH) cell hyperplasia with p18-null mice. The resulting offsprings developed accelerated enlargement of the anterior lobe with predominantly TSH cell hyperplasia. Immunohistochemical and histological analyses of these mice along with p27/p18 double-null mice, p18-null mice, and p27-null mice showed evidence of TSH, adrenocorticotropic hormone, prolactin, and luteinizing hormone hyperplasia. To determine whether there were alterations of p27 and the target proteins implicated in the ubiquitin degradation of p27 and other cyclin-dependent kinase inhibitors, we examined expression of SKP 2, Grb 2, and Jab 1 in the pituitaries of null mice. In the αSU-null mice there were decreased levels of SKP 2 and elevated levels of Grb 2 expression by Western blot analysis. Immunohistochemical analysis of the pituitary showed elevated Grb 2 in αSU-null and p18/αSU double-null mice. Jab 1 levels were not different from controls in the pituitary. These results show that 1) the p18/αSU double-null mice represent a good model to study the rapid development of anterior pituitary hyperplasia, and 2) various proteins important in p27 and other cyclin-dependent kinase inhibitor protein degradation are altered in the pituitary of αSU-null and p18/αSU double-null mouse models.
机译:垂体最自然发生的增生性和赘生性病变发生在垂体前叶。 Rb,p27 kip1 (p27)和p18 INK4c (p18)等多种细胞周期蛋白的靶向破坏与中叶垂体增生有关。为了建立垂体前叶增殖模型来研究垂体肿瘤的发病机制,我们将糖蛋白激素α-亚基(αSU)-空小鼠与p18-空小鼠杂交,使甲状腺刺激激素(TSH)细胞增生。产生的后代发育加速的前叶增大,主要是TSH细胞增生。这些小鼠以及p27 / p18双无效小鼠,p18无效小鼠和p27无效小鼠的免疫组织化学和组织学分析显示了TSH,促肾上腺皮质激素,催乳素和促黄体生成激素增生的证据。为了确定是否存在p27的改变以及与p27泛素降解和其他细胞周期蛋白依赖性激酶抑制剂有关的靶蛋白,我们检查了SKP 2,Grb 2和Jab 1在无效小鼠的垂体中的表达。通过蛋白质印迹分析,在无αSU小鼠中,SKP 2水平降低,而Grb 2表达水平升高。垂体的免疫组织化学分析显示,在αSU无效和p18 /αSU双重无效小鼠中,Grb 2升高。 Jab 1水平与垂体对照无差异。这些结果表明,1)p18 /αSU双无效小鼠代表研究垂体前叶增生快速发展的良好模型,并且2)对p27和其他细胞周期蛋白依赖性激酶抑制剂蛋白降解重要的各种蛋白在垂体中发生改变-nSU和p18 /αSU双-null小鼠模型的建立。

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