首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Copper-dependent co-internalization of the prion protein and glypican-1.
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Copper-dependent co-internalization of the prion protein and glypican-1.

机译:铜依赖的co蛋白和glypican-1的共内化作用。

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摘要

Heparan sulfate chains have been found to be associated with amyloid deposits in a number of diseases including transmissible spongiform encephalopathies. Diverse lines of evidence have linked proteoglycans and their glycosaminoglycan chains, and especially heparan sulfate, to the metabolism of the prion protein isoforms. Glypicans are a family of glycosylphosphatidylinositol-anchored, heparan sulfate-containing, cell-associated proteoglycans. Cysteines in glypican-1 can become nitrosylated by endogenously produced nitric oxide. When glypican-1 is exposed to a reducing agent, such as ascorbate, nitric oxide is released and autocatalyses deaminative cleavage of heparan sulfate chains. These processes take place while glypican-1 recycles via a non-classical, caveolin-associated pathway. We have previously demonstrated that prion protein provides the Cu(2+) ions required to nitrosylate thiol groups in the core protein of glypican-1. By using confocal immunofluorescence microscopy and immunomagnetic techniques, we now show that copper induces co-internalization of prion protein and glypican-1 from the cell surface to perinuclear compartments. We find that prion protein is controlling both the internalization of glypican-1 and its nitric oxide-dependent autoprocessing. Silencing glypican-1 expression has no effect on copper-stimulated prion protein endocytosis, but in cells expressing a prion protein construct lacking the copper binding domain internalization of glypican-1 is much reduced and autoprocessing is abrogated. We also demonstrate that heparan sulfate chains of glypican-1 are poorly degraded in prion null fibroblasts. The addition of either Cu(2+) ions, nitric oxide donors, ascorbate or ectopic expression of prion protein restores heparan sulfate degradation. These results indicate that the interaction between glypican-1 and Cu(2+)-loaded prion protein is required both for co-internalization and glypican-1 self-pruning.
机译:已发现硫酸乙酰肝素链与淀粉样蛋白沉积有关,包括许多可传播的海绵状脑病。各种各样的证据表明蛋白聚糖及其糖胺聚糖链,特别是硫酸乙酰肝素与to病毒蛋白同工型的代谢有关。聚糖聚糖是糖基磷脂酰肌醇固定的,含硫酸乙酰肝素的细胞相关蛋白聚糖家族。 Glypican-1中的半胱氨酸可被内源性产生的一氧化氮亚硝化。当Glypican-1暴露于还原剂(如抗坏血酸盐)时,一氧化氮被释放并自动催化硫酸乙酰肝素链的脱氨裂解。这些过程发生在glypican-1通过非经典的与小孔蛋白相关的途径循环的过程中。我们以前已经证明that病毒蛋白提供了glypican-1核心蛋白中亚硝化巯基所需的Cu(2+)离子。通过使用共聚焦免疫荧光显微镜和免疫磁技术,我们现在表明铜诱导蛋白和glypican-1从细胞表面到核周区的共内在化。我们发现病毒蛋白控制glypican-1的内在化及其一氧化氮依赖性自动加工。沉默glypican-1的表达对铜刺激的pr病毒蛋白的内吞作用没有影响,但是在表达缺乏glypican-1的铜结合域内在化的病毒蛋白构建体的细胞中,自噬被取消。我们还证明了glypican-1的硫酸乙酰肝素链在病毒无效的成纤维细胞中降解较差。铜离子(2+),一氧化氮供体,抗坏血酸盐或异位表达的ion病毒蛋白都可以恢复硫酸乙酰肝素的降解。这些结果表明,glypican-1和Cu(2+)病毒蛋白之间的相互作用对于共内化和glypican-1自我修剪都是必需的。

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