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Molecular counting of low-density lipoprotein particles as individuals and small clusters on cell surfaces.

机译:低密度脂蛋白颗粒作为细胞表面上的单个和小簇的分子计数。

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摘要

We employ the intensely fluorescent analogue diI-LDL (Barak, L. S., and W. W. Webb, 1981, J. Cell Biol. 90:595-604) as a counting marker to determine the numbers of LDL-receptor complexes that are contained in clusters on the surfaces of human fibroblasts and human epidermoid carcinoma cells. The application of quantitative digital intensified video optical microscopy allows the measurement of the fluorescence power collected from individual fluorescent spots on a cell with sufficient accuracy that the number of optically unresolved particles producing the fluorescence in the spot can be estimated. We demonstrate that isolated individual diI-LDL particles are detected on the surface of all cells investigated. Analysis of the LDL cluster size distributions on the various cell lines shows clear differences that correlate with efficiency of LDL metabolism. We find that normal fibroblasts (GM3348) have LDL-receptor complex populations dominated by large cluster sizes (greater than 4 LDL), while internalization-deficient J.D. mutant fibroblasts (GM2408A) and epidermoid carcinoma cells (A-431) show predominantly small clusters (1-3 LDL). No evidence for large-scale ordering or "superclustering" of clusters is found.
机译:我们使用强荧光类似物diI-LDL(Barak,LS,and WW Webb,1981,J.Cell Biol.90:595-604)作为计数标记,以确定簇中包含的LDL-受体复合物的数量人成纤维细胞和人表皮癌细胞的表面。定量数字增强视频光学显微镜的应用允许以足够的精度测量从细胞上单个荧光点收集的荧光功率,从而可以估计在该点产生荧光的光学上未溶解的颗粒的数量。我们证明隔离的单个diI-LDL粒子被检测到的所有研究的细胞表面上。对各种细胞系上LDL簇大小分布的分析显示出与LDL代谢效率相关的明显差异。我们发现正常的成纤维细胞(GM3348)的LDL受体复杂群体以大簇大小(大于4 LDL)为主,而内化缺陷型JD突变成纤维细胞(GM2408A)和表皮样癌细胞(A-431)则以小簇为主( 1-3 LDL)。没有证据表明大规模的集群排序或“超集群”。

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