利用荧光报告蛋白和ImageJ软件检测和定量培养细胞内质网和细胞质中的钙离子。

Shunsuke Saito, Kazutoshi Mori
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引用次数: 0

摘要

本方案描述了一种利用荧光报告蛋白和ImageJ软件检测和定量培养细胞内质网(ER)和细胞质中钙离子的方法。基因工程荧光报告蛋白,如G-CEPIA1er和GCaMP6f,定位于感兴趣的细胞内区域(即内质网和细胞质),并在与钙离子结合时发出绿色荧光。这样,转染了这些报告基因表达载体的细胞的荧光亮度反映了细胞内各区域的钙离子浓度。在这里,我们描述了在荧光显微镜下观察表达这些荧光报告的培养细胞的过程,使用免费图像分析软件ImageJ (https://imagej.net/ij/index.html)分析获得的图像,并确定图像中存在的多个细胞的平均荧光亮度。目前的方法使我们能够快速,轻松地定量含有多个细胞的图像上的钙离子,并确定不同条件下的实验中细胞内钙离子浓度是否存在相对差异。使用荧光报告蛋白检测和定量内质网和细胞质中的钙离子使用ImageJ快速简便地验证测量结果各种实验条件(药物治疗,突变体等)的同时比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Detection and Quantification of Calcium Ions in the Endoplasmic Reticulum and Cytoplasm of Cultured Cells Using Fluorescent Reporter Proteins and ImageJ Software.

Detection and Quantification of Calcium Ions in the Endoplasmic Reticulum and Cytoplasm of Cultured Cells Using Fluorescent Reporter Proteins and ImageJ Software.

Detection and Quantification of Calcium Ions in the Endoplasmic Reticulum and Cytoplasm of Cultured Cells Using Fluorescent Reporter Proteins and ImageJ Software.

Detection and Quantification of Calcium Ions in the Endoplasmic Reticulum and Cytoplasm of Cultured Cells Using Fluorescent Reporter Proteins and ImageJ Software.

This protocol describes a method for detecting and quantifying calcium ions in the endoplasmic reticulum (ER) and cytoplasm of cultured cells using fluorescent reporter proteins and ImageJ software. Genetically engineered fluorescent reporter proteins, such as G-CEPIA1er and GCaMP6f, localize to intracellular regions of interest (i.e., ER and cytoplasm) and emit green fluorescence upon binding to calcium ions. In this way, the fluorescence brightness of cells transfected with expression vectors for these reporters reflects the calcium ion concentration in each intracellular region. Here, we describe procedures for observing cultured cells expressing these fluorescent reporters under a fluorescence microscope, analyzing the obtained image using the free image analysis software ImageJ (https://imagej.net/ij/index.html), and determining the average fluorescence brightness of multiple cells present in the image. The current method allows us to quickly and easily quantify calcium ions on an image containing multiple cells and to determine whether there are relative differences in intracellular calcium ion concentration among experiments with different conditions. Key features Detection and quantification of calcium ions in the ER and cytoplasm using fluorescent reporter proteins Quick and easy verification of measurement results using ImageJ Simultaneous comparison between various experimental conditions (drug treatment, mutants, etc.).

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