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首页> 外文期刊>Biological chemistry >Intracellular Concentration Measurements in Adherent Cells: A Comparison of Import Efficiencies of Cell-Permeable Peptides
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Intracellular Concentration Measurements in Adherent Cells: A Comparison of Import Efficiencies of Cell-Permeable Peptides

机译:贴壁细胞的细胞内浓度测量:细胞渗透性肽的导入效率的比较。

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A protocol was developed for performing intracellular concentration measurements in flat adherent tissue culture cells by fluorescence correlation microscopy (FCM). Determination of the number of molecules in the confocal detection volume had to account for background fluorescence caused by molecules adsorbed to the surface of the measurement chamber. Such a background signal leads to a decrease in the amplitude of the autocorrelation function, and there-by to the calculation of an erroneously high number of molecules. Because of the spatial heterogeneity of the background intensity, a method was devised by which its contribution to the total fluorescence could be determined directly from each individual autocorrelation measurement. This method was applied to a comparison of the import efficiencies of different cell-permeable peptides at nanomolar concentrations. The Antennapedia homeodomain-derived peptide penetratin was imported about three times as efficient as the basic fibroblast growth factor-derived MTS peptide. Both peptides equilibrated between cytoplasm and nucleus. A relatively high mobility of these molecules inside the cells indicated that they may be rapidly degraded by cytosolic proteases. Based on these results, it will be possible to determine intracellular concentrations of inhibitors linked to import peptides directly by FCM at nanomolar concentrations and to optimise such constructs for proteolytic stability.
机译:开发了一种协议,用于通过荧光相关显微镜(FCM)在扁平贴壁组织培养细胞中进行细胞内浓度测量。共聚焦检测体积中分子数目的确定必须考虑由吸附到测量室表面的分子引起的背景荧光。这样的背景信号导致自相关函数的幅度减小,从而导致错误数量的分子的计算。由于背景强度的空间异质性,设计了一种方法,通过该方法可以直接从每个单独的自相关测量中确定其对总荧光的贡献。该方法用于比较纳摩尔浓度下不同细胞可渗透肽的导入效率。 Antennapedia同源域衍生的肽Penetratin的导入效率是碱性成纤维细胞生长因子衍生的MTS肽的三倍。两种肽均在细胞质和细胞核之间平衡。这些分子在细胞内的相对较高的迁移率表明它们可能会被胞质蛋白酶迅速降解。基于这些结果,将有可能确定通过FCM以纳摩尔浓度直接与输入肽相连的抑制剂的细胞内浓度,并优化这种构建物的蛋白水解稳定性。

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