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首页> 外文期刊>The Journal of biological chemistry >Serglycin Is a Major Proteoglycan in Polarized Human Endothelial Cells and Is Implicated in the Secretion of the Chemokine GROα/CXCL1
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Serglycin Is a Major Proteoglycan in Polarized Human Endothelial Cells and Is Implicated in the Secretion of the Chemokine GROα/CXCL1

机译:六甘油是偏振人内皮细胞中的主要蛋白质聚糖,涉及分泌趋化因子GEα/ CXCL1

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Proteoglycan (PG) expression was studied in primary human umbilical vein endothelial cells (HUVEC). RT-PCR analyses showed that the expression of the PG serglycin core protein was much higher than that of the extracellular matrix PG decorin and the cell surface PG syndecan-1. PG biosynthesis was further studied by biosynthetic [35S]sulfate labeling of polarized HUVEC. Interestingly, a major part of 35S-PGs was secreted to the apical medium. A large portion of these PGs was trypsin-resistant, a typical feature of serglycin. The trypsin-resistant PGs were mainly of the chondroitin/dermatan sulfate type but also contained a minor heparan sulfate component. Secreted serglycin was identified by immunoprecipitation as a PG with a core protein of ~30 kDa. Serglycin was furthermore shown to be present in perinuclear regions and in two distinct types of vesicles throughout the cytoplasm using immunocytochemistry. To search for possible serglycin partner molecules, HUVEC were stained for the chemokine growth-related oncogene α (GROα/CXCL1). Co-localization with serglycin could be demonstrated, although not in all vesicles. Serglycin did not show overt co-localization with tissue-type plasminogen activator-positive vesicles. When PG biosynthesis was abrogated using benzyl-β-d-xyloside, serglycin secretion was decreased, and the number of vesicles with co-localized serglycin and GROα was reduced. The level of GROα in the apical medium was also reduced after xyloside treatment. Together, these findings indicate that serglycin is a major PG in human endothelial cells, mainly secreted to the apical medium and implicated in chemokine secretion.
机译:在原发性人脐静脉内皮细胞(HUVEC)中研究了蛋白质聚糖(PG)表达。 RT-PCR分析表明,PG六甘油蛋白核心蛋白的表达远高于细胞外基质PG牙套和细胞表面PG Syndecan-1的表达。通过Biosynthetic [35s]硫酸盐标记进一步研究了PG生物合成。有趣的是,35s-pgs的主要部分被分泌到顶端培养基。这些PG的大部分是胰蛋白酶抗性的,是血糖蛋白的典型特征。胰蛋白酶抗性PGS主要是软骨素/皮下硫酸盐类型,而且含有次次硫酸盐硫酸盐组分。通过免疫沉淀作为PG鉴定分泌的血曲,具有〜30kDa的核心蛋白。此外,血清蛋白显示出在治疗中存在于治疗中,并使用免疫细胞化学在整个细胞质中以两种不同类型的囊泡。为了寻找可能的血糖蛋白合作伙伴分子,Huvec被染色趋化因子生长相关的癌基因α(GROα/ CXCL1)。可以证明与血清霉素的共同定位,尽管不在所有囊泡中。乙炔蛋白没有显示出与组织型纤溶酶原激活剂阳性囊泡的明显共定位。当使用苄基-β-D-木糖苷消除PG生物合成,减少血糖分泌,并降低了具有共局部化血曲和孔α的囊泡的数量。在木质化处理后,顶端培养基中的凸座级的水平也降低。这些发现在一起表明,血糖蛋白是人内皮细胞中的主要pG,主要分泌到顶端介质并涉及趋化因子分泌。

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