首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Endocytosis of GM-CSF receptor beta is essential for signal transduction regulating mesothelial-macrophage transition
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Endocytosis of GM-CSF receptor beta is essential for signal transduction regulating mesothelial-macrophage transition

机译:GM-CSF受体β的内吞作用对于信号转导调节间皮巨噬细胞过渡至关重要

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摘要

During Freund's adjuvant induced inflammation rat mesenteric mesothelial cells transdifferentiate into mesenchymal cell. They express macrophage markers, inflammatory cytokines (TGF-beta, TNF alpha, IL-6), and specific receptors. When primary mesenteric cultures were treated with GM-CSF and/or TGF-beta (in vitro), similar phenotypic and biological changes were induced. It seemed likely that GM-CSF receptor-ligand complex should be internalized to initiate mesothelial-macrophage transition. To follow the intracellular route of GM-CSF receptor beta, we co-localized this receptor with various endocytic markers (Cav-1, EEA1, Rab7, and Rab11a), and carried out detailed immunocytochemical, statistical and biochemical analyses. Since STAT5 is one of the downstream element of GM-CSF signaling, we followed the expression and phosphorylation level of this transcription factor. Our results showed that in mesenteric mesothelial cells GM-CSF receptor beta is internalized by caveolae, delivered into early endosomes where the signaling events occur, STAT5A is phosphorylated by JAK2, and then translocated into the nucleus. When dynamin-dependent endocytosis of GM-CSFR beta is inhibited by dynasore, phosphorylation of STAT5A is not occurred, confirming, that the internalization of receptor beta is indispensable for signal transduction. At the early time of inflammation a significant receptor recycling can be found to the plasma membrane. Later (day 8) the receptor is delivered into late endosomes, indicating that its degradation has already started, and the regeneration of mesothelial cells can start. All of these data strongly support that the internalization of GM-CSF receptor beta is required and essential for signal transduction.
机译:在弗氏佐剂诱导的炎症期间大鼠肠系膜间隙细胞转化为间充质细胞。它们表达巨噬细胞标记物,炎症细胞因子(TGF-β,TNFα,IL-6)和特异性受体。当用GM-CSF和/或TGF-β(体外)处理原发性肠系膜培养物时,诱导类似的表型和生物学变化。应该内化GM-CSF受体 - 配体复合物,以引发间皮巨噬细胞过渡。为了遵循GM-CSF受体β的细胞内途径,我们将该受体与各种内吞标记物(CAV-1,EEA1,RAB7和RAB11A共同定位,进行了详细的免疫细胞化学,统计和生物化学分析。由于STAT5是GM-CSF信号传导的下游元件之一,因此我们遵循该转录因子的表达和磷酸化水平。我们的研究结果表明,在肠系膜间隙细胞GM-CSF受体β通过Caveolae内化,递送到早期的底皮物中,其中发生信号传导事件,STAT5A通过JAK2磷酸化,然后将其粘附在细胞核中。当通过Dynasore抑制GM-CSFRβ的发动力依赖性内吞作用时,没有发生STAT5a的磷酸化,确认,受体β的内化对于信号转导是必不可少的。在炎症的早期时间,可以发现显着的受体再循环到血浆膜上。后来(第8天)将受体递送到晚期内体中,表明其降解已经开始,并且开始的间皮细胞的再生可以开始。所有这些数据都强烈支持GM-CSF受体β的内化是必需的,对信号转导必需。

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