首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Transforming Growth Factor-β1 (TGF-β1)-stimulated Fibroblast to Myofibroblast Differentiation Is Mediated by Hyaluronan (HA)-facilitated Epidermal Growth Factor Receptor (EGFR) and CD44 Co-localization in Lipid Rafts
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Transforming Growth Factor-β1 (TGF-β1)-stimulated Fibroblast to Myofibroblast Differentiation Is Mediated by Hyaluronan (HA)-facilitated Epidermal Growth Factor Receptor (EGFR) and CD44 Co-localization in Lipid Rafts

机译:透明质酸(HA)促进表皮生长因子受体(EGFR)和CD44在脂质筏中的共定位介导转化生长因子-β1(TGF-β1)刺激的成纤维细胞向成肌纤维细胞的分化。

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摘要

Fibroblast to myofibroblast differentiation drives effective wound healing and is largely regulated by the cytokine transforming growth factor-β1 (TGF-β1). Myofibroblasts express α-smooth muscle actin and are present in granulation tissue, where they are responsible for wound contraction. Our previous studies show that fibroblast differentiation in response to TGF-β1 is dependent on and mediated by the linear polysaccharide hyaluronan (HA). Both the HA receptor, CD44, and the epidermal growth factor receptor (EGFR) are involved in this differentiation response. The aim of this study was to understand the mechanisms linking HA-, CD44-, and EGFR-regulated TGF-β1-dependent differentiation. CD44 and EGFR co-localization within membrane-bound lipid rafts was necessary for differentiation, and this triggered downstream mitogen-activated protein kinase (MAPK/ERK) and Ca2+/calmodulin kinase II (CaMKII) activation. We also found that ERK phosphorylation was upstream of CaMKII phosphorylation, that ERK activation was necessary for CaMKII signaling, and that both kinases were essential for differentiation. In addition, HA synthase-2 (HAS2) siRNA attenuated both ERK and CaMKII signaling and sequestration of CD44 into lipid rafts, preventing differentiation. In summary, the data suggest that HAS2-dependent production of HA facilitates TGF-β1-dependent fibroblast differentiation through promoting CD44 interaction with EGFR held within membrane-bound lipid rafts. This induces MAPK/ERK, followed by CaMKII activation, leading to differentiation. This pathway is synergistic with the classical TGF-β1-dependent SMAD-signaling pathway and may provide a novel opportunity for intervention in wound healing.
机译:成纤维细胞向成肌纤维细胞的分化驱动伤口的有效愈合,并在很大程度上受细胞因子转化生长因子-β1(TGF-β1)的调节。肌成纤维细胞表达α-平滑肌肌动蛋白并存在于肉芽组织中,在那里它们负责伤口收缩。我们以前的研究表明,响应TGF-β1的成纤维细胞分化取决于线性多糖透明质酸(HA)并由其介导。 HA受体CD44和表皮生长因子受体(EGFR)都参与了这种分化反应。这项研究的目的是了解连接HA,CD44和EGFR调节的TGF-β1依赖性分化的机制。 CD44和EGFR在膜结合脂质筏中的共定位是分化所必需的,这触发了下游的丝裂原激活蛋白激酶(MAPK / ERK)和Ca 2 + /钙调蛋白激酶II(CaMKII)的激活。我们还发现ERK磷酸化是CaMKII磷酸化的上游,ERK激活对于CaMKII信号传导是必需的,并且两种激酶对于分化都是必不可少的。此外,HA合酶2(HAS2)siRNA减弱了ERK和CaMKII信号传导,并将CD44螯合成脂质筏,阻止了分化。总之,数据表明,HAS2依赖性HA的产生通过促进CD44与膜结合脂质筏中保持的EGFR相互作用促进TGF-β1依赖性成纤维细胞的分化。这会诱导MAPK / ERK,然后激活CaMKII,从而导致分化。该途径与经典的TGF-β1依赖性SMAD信号传导途径协同作用,并可能为伤口愈合的干预提供新的机会。

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