首页> 外文期刊>The biochemical journal >The detection of substructures within proteoglycan molecules. Electron-microscopic immuno-localization with the use of Protein A-gold
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The detection of substructures within proteoglycan molecules. Electron-microscopic immuno-localization with the use of Protein A-gold

机译:蛋白聚糖分子内亚结构的检测。使用蛋白质A-金进行电子显微镜免疫定位

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pProteoglycan monomers from pig laryngeal cartilage were examined by electron microscopy with benzyldimethylalkylammonium chloride as the spreading agent. The proteoglycans appeared as extended molecules with a beaded structure, representing the chondroitin sulphate chains collapsed around the protein core. Often a fine filamentous tail was present at one end. Substructures within proteoglycan molecules were localized by incubation with specific antibodies followed by Protein A-gold (diameter 4 nm). After the use of an anti-(binding region) serum the Protein A-gold (typically one to three particles) bound at the extreme end of the filamentous region. A small proportion of the labelled molecules (10-15%) showed the presence of gold particles at both ends. A monoclonal antibody specific for a keratan sulphate epitope (MZ15) localized a keratan sulphate-rich region at one end of the proteoglycan, but gold particles were not observed along the extended part of the protein core. This distribution was not changed by prior chondroitin AC lyase digestion of the proteoglycan. Localization with a different monoclonal antibody to keratan sulphate (5-D-4) caused a change in the spreading behaviour of a proportion (approx. 20%) of the proteoglycan monomers that lost their beaded structure and appeared with the chondroitin sulphate chains projecting from the protein core. In these molecules the Protein A-gold localized antibody (5-D-4) along the length of the protein core whereas in those molecules with a beaded appearance it labelled only at one end. Labelling with either of the monoclonal antibodies was specific, as it was inhibited by exogenously added keratan sulphate. The differential localization achieved may reflect structural differences within the proteoglycan population involving keratan sulphate and the protein core to which it is attached. The results showed that by this technique substructures within proteoglycan molecules can be identified by Protein A-gold labelling after the use of specific monoclonal or polyclonal antibodies./p
机译:用苄基二甲基烷基氯化铵作为铺展剂,通过电子显微镜检查了猪喉软骨的蛋白聚糖单体。蛋白聚糖显示为带有串珠结构的延伸分子,代表硫酸软骨素硫酸盐链塌陷在蛋白质核心周围。一端经常有细丝状尾巴。蛋白聚糖分子内的亚结构可通过与特异性抗体,然后与蛋白A-金(直径4 nm)孵育来定位。使用抗(结合区)血清后,蛋白A-金(通常为一到三个颗粒)结合在丝状区的最末端。一小部分标记分子(10-15%)显示在两端都有金颗粒。硫酸角质素抗原决定簇(MZ15)特异的单克隆抗体位于蛋白聚糖一端的富含硫酸角质素的区域,但在蛋白质核心的延伸部分未观察到金颗粒。以前的软骨素AC裂解酶对蛋白聚糖的消化没有改变这种分布。用不同的硫酸角质素单克隆抗体(5-D-4)定位会导致一部分蛋白聚糖单体的散布行为发生变化(约20%),这些蛋白聚糖失去了串珠的结构,并且硫酸软骨素链从蛋白质核心。在这些分子中,蛋白A-金会沿着蛋白核的长度定位抗体(5-D-4),而在那些具有串珠外观的分子中,它仅在一端标记。用任一种单克隆抗体进行标记都是特异性的,因为它被外源添加硫酸角质素抑制。实现的差异化定位可能反映了蛋白聚糖群中涉及硫酸角质素及其附着的蛋白核心的结构差异。结果表明,通过使用该技术,可以在使用特定的单克隆或多克隆抗体后通过蛋白A-金标记识别蛋白聚糖分子中的亚结构。

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