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Leukoregulin induction of protein expression in human orbital fibroblasts: Evidence for anatomical site-restricted cytokine–target cell interactions

机译:白细胞调节蛋白在人眼眶成纤维细胞中的蛋白表达诱导:解剖学上限制位点细胞因子与靶细胞相互作用的证据

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摘要

The molecular basis for the profound inflammatory response and the accumulation of hyaluronan in orbital connective tissues seen in thyroid-associated ophthalmopathy is unknown. Moreover, the link between the orbital manifestations of Graves’ disease and those in the pretibial skin, localized dermopathy, has yet to be established. We have reported recently that leukoregulin, an activated T lymphocyte-derived cytokine, dramatically induces hyaluronan synthesis and prostaglandin–endoperoxide H synthase 2 in human orbital fibroblasts in culture. In the current studies, utilizing giant two-dimensional gel electrophoresis, we find that orbital fibroblasts express constitutively a protein profile that distinguishes them from skin fibroblasts derived from the abdominal wall and from the pretibium. We further demonstrate that leukoregulin, when present in culture medium for 16 hr, up-regulates a set of orbital fibroblast proteins not present in untreated cultures or in fibroblasts from the abdominal wall. However, some of the same protein inductions are present in the pretibial fibroblasts. These leukoregulin-induced changes in protein expression are completely blocked by dexamethasone (10 nM). Our findings are the first to identify proteins that appear to be expressed and differentially regulated in an anatomical site-restricted manner in orbital and pretibial fibroblasts and seem to establish a molecular link between fibroblasts from the orbit and those in pretibial skin.
机译:甲状腺相关性眼病在眼眶结缔组织中发生深刻炎症反应和透明质酸积累的分子基础尚不清楚。而且,格雷夫斯氏病的眼病表现与胫前皮肤的眼病表现(局部皮肤病)之间的联系尚未建立。我们最近报道,白细胞调节蛋白(一种活化的T淋巴细胞衍生的细胞因子)在培养的人眼成纤维细胞中显着诱导透明质酸合成和前列腺素-过氧化物内毒素H合酶2。在当前的研究中,利用巨型二维凝胶电泳,我们发现眼眶成纤维细胞组成性地表达一种蛋白质特征,从而将它们与源自腹壁和前庭的皮肤成纤维细胞区分开。我们进一步证明,白细胞调节蛋白在培养基中存在16小时后,会上调一组未经处理的培养物中或腹壁成纤维细胞中不存在的轨道成纤维细胞蛋白。然而,在胫前成纤维细胞中存在一些相同的蛋白质诱导。这些白细胞调节蛋白诱导的蛋白表达变化被地塞米松(10 nM)完全阻断。我们的发现是第一个鉴定在眼眶和胫前成纤维细胞中以解剖学位点受限的方式表达和差异调节的蛋白质,并且似乎在眼眶成纤维细胞与胫前皮肤中的成纤维细胞之间建立了分子联系。

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