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首页> 外文期刊>The Journal of Endocrinology: The Journal of the Society for Endocrinology >Caveolin 3-mediated integrin β1 signaling is required for the proliferation of folliculostellate cells in rat anterior pituitary gland under the influence of extracellular matrix
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Caveolin 3-mediated integrin β1 signaling is required for the proliferation of folliculostellate cells in rat anterior pituitary gland under the influence of extracellular matrix

机译:在细胞外基质的影响下,垂体前叶腺中卵泡状细胞的增殖需要Caveolin 3介导的整合素β1信号传导

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摘要

Folliculostellate (FS) cells in the anterior pituitary gland are believed to have multifunctional properties. Using transgenic rats that express green fluorescent protein (GFP) specifically in FS cells in the anterior pituitary gland (S100b-GFP rats), we recently revealed that FS cells in primary culture exhibited marked proliferation in the presence of laminin, an extracellular matrix (ECM) component of the basement membrane. In a process referred to as matricrine action, FS cells receive ECM as a signal through their receptors, which results in morphological and functional changes. In this study, we investigated matricrine signaling in FS cells and observed that the proliferation of FS cells is mediated by integrin β1, which is involved in various signaling pathways for cell migration and proliferation in response to ECM. Then, we analyzed downstream events of the integrin β1 signaling pathway in the proliferation of FS cells and identified caveolin 3 as a potential candidate molecule. Caveolin 3 is a membrane protein that binds cholesterol and a number of signaling molecules that interact with integrin β1. Using specific small interfering RNA of caveolin 3, the proliferation of FS cells was inhibited. Furthermore, caveolin 3 drove activation of the mitogen-activated protein kinase (MAPK) signaling cascades, which resulted in upregulation of cyclin D1 in FS cells. These findings suggest that matricrine signaling in the proliferation of FS cells was transduced by a caveolin 3-mediated integrin β1 signaling pathway and subsequent activation of the MAPK pathway.
机译:垂体前叶的卵泡状(FS)细胞被认为具有多功能特性。我们最近使用了在垂体前叶的FS细胞中表达绿色荧光蛋白(GFP)的转基因大鼠(S100b-GFP大鼠),最近我们发现原代培养中的FS细胞在层粘连蛋白(一种细胞外基质,ECM)的存在下表现出明显的增殖)基底膜的成分。在称为母体作用的过程中,FS细胞通过其受体接收ECM作为信号,从而导致形态和功能发生变化。在这项研究中,我们调查了FS细胞中的苦参碱信号转导,并观察到FS细胞的增殖是由整联蛋白β1介导的,整联蛋白β1参与了多种细胞迁移和响应ECM增殖的信号通路。然后,我们分析了整合素β1信号通路在FS细胞增殖中的下游事件,并将小窝蛋白3鉴定为潜在的候选分子。 Caveolin 3是一种膜蛋白,可结合胆固醇和许多与整联蛋白β1相互作用的信号分子。使用caveolin 3的特定小干扰RNA,可以抑制FS细胞的增殖。此外,caveolin 3驱动了有丝分裂原激活的蛋白激酶(MAPK)信号级联反应的激活,从而导致FS细胞中细胞周期蛋白D1的上调。这些发现表明,在FS细胞的增殖中的苦参碱信号转导由小窝蛋白3介导的整联蛋白β1信号转导通路和随后的MAPK通路的激活来转导。

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