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首页> 外文期刊>Human Molecular Genetics >Neurofibromin regulates somatic growth through the hypothalamic-pituitary axis.
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Neurofibromin regulates somatic growth through the hypothalamic-pituitary axis.

机译:神经纤维蛋白通过下丘脑-垂体轴调节体细胞生长。

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摘要

To study the role of the neurofibromatosis-1 (NF1) gene in mammalian brain development, we recently generated mice in which Nf1 gene inactivation occurs in neuroglial progenitor cells using the brain lipid binding protein (BLBP) promoter. We found that Nf1(BLBP)CKO mice exhibit significantly reduced body weights and anterior pituitary gland sizes. We further demonstrate that the small anterior pituitary size reflects loss of neurofibromin expression in the hypothalamus, leading to reduced growth hormone releasing hormone, pituitary growth hormone (GH) and liver insulin-like growth factor-1 (IGF1) production. Since neurofibromin both negatively regulates Ras activity and positively modulates cAMP levels, we examined the signaling pathway responsible for these abnormalities. While BLBP-mediated expression of an activated Ras molecule did not recapitulate the body weight and hypothalamic/pituitary defects, treatment of Nf1(BLBP)CKO mice with rolipram to increase cAMP levels resulted in a partial restoration of the body weight phenotype. Furthermore, conditional expression of the Ras regulatory GAP domain of neurofibromin also did not rescue the body weight or Igf1 mRNA defects in Nf1(BLBP)CKO mice. Collectively, these data demonstrate a critical role for neurofibromin in hypothalamic-pituitary axis function and provide further insights into the short stature and GH deficits seen in children with NF1.
机译:为了研究神经纤维瘤病1(NF1)基因在哺乳动物脑发育中的作用,我们最近使用脑脂质结合蛋白(BLBP)启动子生成了其中Nf1基因失活在神经胶质祖细胞中发生的小鼠。我们发现Nf1(BLBP)CKO小鼠表现出明显降低的体重和垂体前叶大小。我们进一步证明了小的垂体前叶大小反映了下丘脑神经纤维蛋白表达的损失,从而导致生长激素释放激素,垂体生长激素(GH)和肝胰岛素样生长因子1(IGF1)的产生减少。由于神经纤维蛋白既可负调节Ras活性,又可正调节cAMP水平,所以我们检查了导致这些异常的信号通路。虽然BLBP介导的活化Ras分子的表达不能概括体重和下丘脑/垂体缺陷,但用咯利普兰治疗Nf1(BLBP)CKO小鼠以提高cAMP的水平导致体重表型的部分恢复。此外,神经纤维蛋白的Ras调节性GAP结构域的条件表达也不能挽救Nf1(BLBP)CKO小鼠的体重或Igf1 mRNA缺陷。总的来说,这些数据证明了神经纤维蛋白在下丘脑-垂体轴功能中的关键作用,并进一步揭示了NF1儿童的矮小身材和GH缺陷。

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