首页> 美国卫生研究院文献>other >A syndecan-4 binding peptide derived from laminin 5 uses a novel PKCε pathway to induce cross-linked actin network (CLAN) formation in human trabecular meshwork (HTM) cells
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A syndecan-4 binding peptide derived from laminin 5 uses a novel PKCε pathway to induce cross-linked actin network (CLAN) formation in human trabecular meshwork (HTM) cells

机译:源自层粘连蛋白5的syndecan-4结合肽使用新型PKCε途径在人小梁网(HTM)细胞中诱导交联的肌动蛋白网络(CLAN)形成

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摘要

In this study, we examined the role(s) of syndecan-4 in regulating the formation of an actin geodesic dome structure called a cross-linked actin network (CLAN) in which syndecan-4 has previously been localized. CLANs have been described in several different cell types, but they have been most widely studied in human trabecular meshwork (HTM) cells where they may play a key role in controlling intraocular pressure by regulating aqueous humor outflow from the eye. In this study we show that a loss of cell surface synedcan-4 significantly reduces CLAN formation in HTM cells. Analysis of HTM cultures treated with or without dexamethasone shows that laminin 5 deposition within the extracellular matrix is increased by glucocorticoid treatment and that a laminin 5-derived, syndecan-4-binding peptide (PEP75), induces CLAN formation in TM cells. This PEP75-induced CLAN formation was inhibited by heparin and the broad spectrum PKC inhibitor Ro-31-7549. In contrast, the more specific PKCα inhibitor Go 6976 had no effect, thus excluding PKCα as a downstream effector of syndecan-4 signaling. Analysis of PKC isozyme expression showed that HTM cells also expressed both PKCγ and PKCε. Cells treated with a PKCε agonist formed CLANs while a PKCα/γ agonist had no effect. These data suggest that syndecan-4 is essential for CLAN formation in HTM cells and that a novel PKCε-mediated signaling pathway can regulate formation of this unique actin structure.
机译:在这项研究中,我们检查了syndecan-4在调节肌动蛋白短程线穹顶结构(称为交联肌动蛋白网络(CLAN))的形成中的作用,先前已将syndecan-4定位在该结构中。 CLANs已在几种不同的细胞类型中进行了描述,但在人类小梁网(HTM)细胞中进行了最广泛的研究,其中它们可能通过调节眼房水的流出而在控制眼内压中发挥关键作用。在这项研究中,我们表明细胞表面synedcan-4的丧失显着降低了HTM细胞中CLAN的形成。对使用或未使用地塞米松处理的HTM培养物的分析表明,糖皮质激素处理可增加细胞外基质中层粘连蛋白5的沉积,而层粘连蛋白5衍生的syndecan-4结合肽(PEP75)可诱导TM细胞中CLAN的形成。肝素和广谱PKC抑制剂Ro-31-7549抑制了PEP75诱导的CLAN的形成。相反,更特异性的PKCα抑制剂Go 6976没有作用,因此排除了PKCα作为syndecan-4信号的下游效应子。对PKC同工酶表达的分析表明,HTM细胞也表达PKCγ和PKCε。用PKCε激动剂处理的细胞形成CLAN,而PKCα/γ激动剂没有作用。这些数据表明,Syndecan-4对于HTM细胞中CLAN的形成至关重要,并且新颖的PKCε介导的信号传导途径可以调节这种独特的肌动蛋白结构的形成。

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