首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Endocytosis of the Type III Transforming Growth Factor-β (TGF-β) Receptor through the Clathrin-independent/Lipid Raft Pathway Regulates TGF-β Signaling and Receptor Down-regulation
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Endocytosis of the Type III Transforming Growth Factor-β (TGF-β) Receptor through the Clathrin-independent/Lipid Raft Pathway Regulates TGF-β Signaling and Receptor Down-regulation

机译:III型转化生长因子-β的胞吞作用 (TGF-β)受体通过网格蛋白独立/脂质筏通路。 调节TGF-β信号传导和受体 下调

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摘要

Transforming growth factor-β (TGF-β) signals through three highly conserved cell surface receptors, the type III TGF-β receptor (TβRIII), the type II TGF-β receptor (TβRII), and the type I TGF-β receptor (TβRI) to regulate diverse cellular processes including cell proliferation, differentiation, migration, and apoptosis. Although TβRI and TβRII undergo ligand-independent endocytosis by both clathrin-mediated endocytosis, resulting in enhanced signaling, and clathrin-independent endocytosis, resulting in receptor degradation, the mechanism and function of TβRIII endocytosis is poorly understood. TβRIII is a heparan sulfate proteoglycan with a short cytoplasmic tail that functions as a TGF-β superfamily co-receptor, contributing to TGF-β signaling through mechanisms yet to be fully defined. We have reported previously that TβRIII endocytosis, mediated by a novel interaction with βarrestin-2, results in decreased TGF-β signaling. Here we demonstrate that TβRIII undergoes endocytosis in a ligand and glycosaminoglycan modification-independent and cytoplasmic domain-dependent manner, with the interaction of Thr-841 in the cytoplasmic domain of TβRIII with β-arrestin2 enhancing TβRIII endocytosis. TβRIII undergoes both clathrin-mediated and clathrin-independent endocytosis. Importantly, inhibition of the clathrin-independent, lipid raft pathway, but not of the clathrin-dependent pathway, results in decreased TGF-β1 induced Smad2 and p38 phosphorylation, supporting a specific role for clathrin-independent endocytosis of TβRIII in regulating both Smad-dependent and Smad-independent TGF-β signaling.
机译:转化生长因子-β(TGF-β)信号通过三种高度保守的细胞表面受体:III型TGF-β受体(TβRIII),II型TGF-β受体(TβRII)和I型TGF-β受体( TβRI)来调节多种细胞过程,包括细胞增殖,分化,迁移和凋亡。尽管TβRI和TβRII都通过网格蛋白介导的内吞作用而发生配体非依赖性内吞作用,从而导致信号增强,而网格蛋白非依赖性内吞作用导致受体降解,但对TβRIII内吞作用的机制和功能了解甚少。 TβRIII是一种硫酸乙酰肝素蛋白聚糖,具有短的胞质尾巴,可作为TGF-β超家族共受体,通过尚未完全确定的机制促进TGF-β信号传导。先前我们已经报道过,通过与βarrestin-2的新型相互作用介导的TβRIII内吞作用导致TGF-β信号转导减少。在这里,我们证明TβRIII以配体和糖胺聚糖修饰非依赖性和胞质域依赖性的方式经历胞吞作用,Thr-841在胞质域的相互作用 具有β-arrestin2的TβRIII可增强TβRIII的内吞作用。 TβRIII接受网格蛋白介导和网格蛋白独立性 内吞作用。重要的是,抑制网格蛋白非依赖性脂质筏 途径,而不是网格蛋白依赖性途径,导致减少 TGF-β1诱导Smad2和p38磷酸化,支持特定作用 对网格蛋白非依赖性的TβRIII内吞作用的调节 Smad依赖性和Smad依赖性TGF-β信号传导。

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