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首页> 外文期刊>The Journal of biological chemistry >Platelet-derived Growth Factor Differentially Regulates the Expression and Post-translational Modification of Versican by Arterial Smooth Muscle Cells through Distinct Protein Kinase C and Extracellular Signal-regulated Kinase Pathways
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Platelet-derived Growth Factor Differentially Regulates the Expression and Post-translational Modification of Versican by Arterial Smooth Muscle Cells through Distinct Protein Kinase C and Extracellular Signal-regulated Kinase Pathways

机译:血小板衍生的生长因子差异地通过不同的蛋白激酶C和细胞外信号调节激酶途径来差异地调节动脉平滑肌细胞对患者的表达和翻译后修饰

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The synthesis of proteoglycans involves steps that regulate both protein and glycosaminoglycan (GAG) synthesis, but it is unclear whether these two pathways are regulated by the same or different signaling pathways. We therefore investigated signaling pathways involved in platelet-derived growth factor (PDGF)-mediated increases in versican core protein and GAG chain synthesis in arterial smooth muscle cells (ASMCs). PDGF treatment of ASMCs resulted in increased versican core protein synthesis and elongation of GAG chains attached to the versican core protein. The effects of PDGF on versican mRNA were blocked by inhibiting either protein kinase C (PKC) or the ERK pathways, whereas the GAG elongation effect of PDGF was blocked by PKC inhibition but not by ERK inhibition. Interestingly, blocking protein synthesis in the presence of cycloheximide abolished the PDGF effect, but not in the presence of xyloside, indicating that GAG synthesis that results from PKC activation is independent from de novo protein synthesis. PDGF also stimulated an increase in the chondroitin-6-sulfate to chondroitin-4-sulfate ratio of GAG chains on versican, and this effect was blocked by PKC inhibitors. These data show that PKC activation is sufficient to cause GAG chain elongation, but both PKC and ERK activation are required for versican mRNA core protein expression. These results indicate that different signaling pathways control different aspects of PDGF-stimulated versican biosynthesis by ASMCs. These data will be useful in designing strategies to interfere with the synthesis of this proteoglycan in various disease states.
机译:蛋白多糖的合成涉及调节蛋白质和糖胺聚糖(GAG)合成的步骤,但目前尚不清楚这两种途径是否受到相同或不同的信号通路调节。因此,我们研究了血小板衍生的生长因子(PDGF)延伸的信号通路,在动脉平滑肌细胞(ASMC)中的核心蛋白和GAG链合成中的增加。 ASMC的PDGF治疗导致Versican核心蛋白质合成和附着在VersicAn核心蛋白上的Gag链伸长率。通过抑制蛋白激酶C(PKC)或ERK途径阻断PDGF对多种MRNA的影响,而PDGF的GAG伸长效应被PKC抑制抑制,但不通过ERK抑制阻断。有趣的是,在环己酰亚胺存在下阻断蛋白质合成废除了PDGF效应,但不在木质苷的存在下,表明PKC活化导致的GAG合成与De Novo蛋白质合成无关。 PDGF还刺激了牙龈链的软骨素-6-硫酸盐的含量增加,而PKC抑制剂阻断了这种效果。这些数据表明,PKC活化足以引起胶质链伸长率,但是PKC和ERK激活都是Versican MRNA核心蛋白表达所必需的。这些结果表明,不同的信号通路通过ASMC控制PDGF刺激的Versican生物合成的不同方面。这些数据对于在各种疾病状态中设计干扰该蛋白多糖合成的策略。

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