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首页> 外文期刊>Theranostics >Nondestructive analysis of tumor-associated membrane protein MUC1 in living cells based on dual-terminal amplification of a DNA ternary complex
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Nondestructive analysis of tumor-associated membrane protein MUC1 in living cells based on dual-terminal amplification of a DNA ternary complex

机译:基于DNA三元复合复合物双末端扩增的活细胞肿瘤相关膜蛋白MUC1的无损分析

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Non-destructive analysis of cells at the molecular level is of critical importance for cell research. At present, immunoassay-based and aptamer-based methods can achieve non-structural destructive cell analysis, but still lead to changes in cells at the molecular level. Here, we have proposed a dual-terminal amplification (DTA) strategy, which enables nondestructive analysis of membrane protein MUC1 without the effect on protein expression and cell viability in living cells. Methods: A fluorophore (Cy5)-labeled DNA ternary complex consisting of three oligonucleotides is designed. It can recognize MUC1 through its aptamer region, and thus make the MUC1 of cells visible under a fluorescence microscope. When DNA polymerase is added, dual-terminal amplification is performed. One direction dissociates aptamer from MUC1, and the other direction, also known as rolling circle amplification (RCA), produces long linear DNA strands, which can be further adopted for quantitative analysis of MUC1. In this way, all reagents are removed from the surface of the cells after the analysis, which allows nondestructive analysis. We named this strategy dual-terminal amplification (DTA) analysis. Results: By using the DTA analysis, both in situ fluorescence imaging analysis and ex situ fluorescence quantitative analysis of MUC1 were achieved. In addition, the aptamer-containing DNA ternary complex stays on cell surface only during the analysis and leaves the cell after the analysis is complete. The cells can be maintained in a non-interfering state for the rest of the time. So after the analysis, it is found that there are no effect on the physiological activity of cells and the expression of target protein even after two rounds of repeatable imaging and quantitative analysis. Conclusion: In summary, we have successfully constructed a strategy for nondestructive analysis of membrane protein in living cells. We believe that this method provides a promising way for the analysis of the key membrane proteins of cells and the versatile utilization of precious cell samples.? The author(s).
机译:在分子水平下对细胞的非破坏性分析对于细胞研究至关重要。目前,基于免疫测定和基于适体的方法可以实现非结构性破坏细胞分析,但仍然导致分子水平的细胞变化。在这里,我们提出了一种双末端扩增(DTA)策略,其能够对膜蛋白MUC1的非破坏性分析,而不会影响蛋白质表达和活细胞中的细胞活力。方法:设计由三种寡核苷酸组成的荧光团(CY5) - 标记的DNA三元复合物。它可以通过其适体区域识别MUC1,因此使MUC1在荧光显微镜下可见。添加DNA聚合酶时,进行双末端扩增。一个方向从muc1中解离体素,并且另一个方向,也称为滚动圆扩增(RCA),产生长的线性DNA链,其可以进一步采用Muc1的定量分析。以这种方式,分析后,所有试剂都从细胞表面除去,这允许非破坏性分析。我们将该策略双末端放大(DTA)分析命名。结果:通过使用DTA分析,达到了原位荧光成像分析和EX原位荧光定量分析MUC1。此外,含有适体的DNA三元复合物仅在分析过程中仅在细胞表面上停留并在分析完成后离开细胞。可以在其余时间内保持细胞以非干扰状态。因此,在分析之后,发现即使在两轮可重复的成像和定量分析中,也没有对细胞的生理活性和靶蛋白表达的影响。结论:总之,我们成功构建了活细胞中膜蛋白的非破坏性分析策略。我们认为,该方法为分析细胞的关键膜蛋白和珍贵细胞样品的多功能使用提供了有希望的方法。作者。

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