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首页> 外文期刊>Journal of Cell Science >Bone-resorbing osteoclasts reveal a dynamic division of basal plasma membrane into two different domains.
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Bone-resorbing osteoclasts reveal a dynamic division of basal plasma membrane into two different domains.

机译:骨吸收破骨细胞揭示了基底质膜动态分为两个不同的域。

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摘要

Bone-resorbing multinucleate osteoclasts exhibit a ruffled border membrane apposing the bone and a basal membrane contacting the circulation. A junctional complex called the sealing zone separates these two membrane domains, but the defined nature of these membrane domains has remained obscure. We now show, using enveloped viral glycoproteins and lectins as tools, that osteoclasts exhibit a novel membrane domain in the basal surface when they are polarized for resorption. Influenza haemagglutinin, which is apically targeted in epithelial cells, is targeted to a restricted area at the top of the basal surface, while vesicular stomatitis virus G-protein which is basolaterally targeted in epithelia, occupies the rest of the basal surface. Neither of these viral glycoproteins is gathered to the ruffled border nor sealing zone area, but they share in a specific way the basal surface. To show that the division of basal membrane into two different domains also occurs in non-infected cells, we have analyzed the distribution of receptors for these viruses and binding sites of some lectins. Both of these methods show that also some endogenous proteins are located in different domains in the basal surface in active osteoclasts. We also show that these two different membrane domains can be distinguished in scanning electron microscopy level due to the villus appearance of the central basal domain.
机译:吸收骨的多核破骨细胞的边缘膜呈皱纹状,与骨骼相接,基底膜与循环相接触。称为密封区的接合复合体将这两个膜结构域分开,但是这些膜结构域的定义性质仍然不清楚。我们现在显示,使用包膜的病毒糖蛋白和凝集素作为工具,破骨细胞在极化以吸收时会在基底表面显示出新的膜结构域。血细胞凝集素主要在上皮细胞中被靶向,在基底表面顶部的受限区域被靶向,而在上皮的基底外侧靶向的水疱性口炎病毒G蛋白占据了基底的其余部分。这些病毒糖蛋白均未聚集到褶皱的边界或密封区,但它们以特定方式共享基底表面。为了证明在未感染的细胞中也会发生基底膜分成两个不同区域的现象,我们分析了这些病毒的受体分布和某些凝集素的结合位点。这两种方法均表明,某些内源蛋白也位于活性破骨细胞基底表面的不同区域。我们还显示,由于中央基础结构域的绒毛外观,这两个不同的膜结构域在扫描电子显微镜水平上可以区分开。

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