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蛋白质丰度测定:优化的蛋白质免疫印迹流程

Protein Abundance Determination: An Optimized Western Blot Workflow.

作者信息

Lallier Scott W, Hill Cynthia L, Nichols David P, Reynolds Susan D

机构信息

Center for Perinatal Research, Nationwide Children's Hospital, Columbus, OH.

Seattle Children's Hospital, University of Washington, Seattle, WA.

出版信息

Ann Clin Lab Sci. 2019 Sep;49(4):507-512.

Abstract

We report that the quantitative western blot (qWB) analysis requires a target protein-specific approach, and we provide a workflow that streamlines development of this process. First, the optimal primary antibody dilution is determined. Blots containing 15 μg total protein per lane are probed with the primary antibody at three concentrations and a secondary antibody concentration that is defined by the manufacturer. The lowest primary antibody concentration that detects a discrete band at the correct molecular weight is used in the remaining two steps. Secondly, the optimal protein load is determined. Blots containing 3.75 to 60 μg protein per lane are probed using the antibody concentrations defined in step 1. A target protein band intensity vs. protein load plot is used to determine the linear dynamic range (LDR) for the target protein. The midpoint of the LDR is defined as the optimal protein load. Finally, an appropriate loading control (LC) is identified. We found that the LDR for β-actin, a commonly used LC, exhibited a narrow range, 3.75 to 15 μg. In contrast, the total protein assessed by a Ponceau staining method exhibited a broader LDR, 3.75 to 60 μg. Thus, the total protein is used as a LC. We conclude that the sensitivity and accuracy of the qWB method is dependent on the use of an optimal: 1) primary antibody dilution; 2) total protein load; 3) and LC. Our workflow simplifies the identification of these values.

摘要

我们报告定量蛋白质免疫印迹(qWB)分析需要一种针对目标蛋白的方法,并且我们提供了一种简化该过程开发的工作流程。首先,确定最佳的一抗稀释度。每条泳道含有15μg总蛋白的印迹用三种浓度的一抗和制造商定义的二抗浓度进行检测。在剩余的两个步骤中使用能在正确分子量处检测到清晰条带的最低一抗浓度。其次,确定最佳的蛋白上样量。每条泳道含有3.75至60μg蛋白的印迹使用步骤1中定义的抗体浓度进行检测。使用目标蛋白条带强度与蛋白上样量的关系图来确定目标蛋白的线性动态范围(LDR)。LDR的中点定义为最佳蛋白上样量。最后,确定合适的上样对照(LC)。我们发现常用的LC——β-肌动蛋白的LDR范围较窄,为3.75至15μg。相比之下,通过丽春红染色法评估的总蛋白表现出更宽的LDR,为3.75至60μg。因此,将总蛋白用作LC。我们得出结论,qWB方法的灵敏度和准确性取决于使用最佳的:1)一抗稀释度;2)总蛋白上样量;3)和LC。我们的工作流程简化了这些值的确定。

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