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A one-pot analysis approach to simplify measurements of protein stability and folding kinetics

机译:一种单罐分析方法,简化蛋白质稳定性和折叠动力学的测量

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To achieve a good understanding of the characteristics of a protein, it is important to study its stability and folding kinetics. Investigations of protein stability have been recently applied to drug-target identification, drug screening, and proteomic studies. The efficiency of the experiments performed to study protein stability and folding kinetics is now a crucial factor that needs to be optimized for these potential applications. However, the standard procedures used to carry out these experiments are usually complicated and time consuming. Large number of measurements is the bottleneck that limits the application of protein folding to large-scale experiments. To overcome this limitation, we developed a method denoted as "one-pot analysis" which is based on taking a single measurement from a mixture of samples rather than from every sample. We combined one-pot analysis with pulse proteolysis to determine the effects of the binding of maltose to maltose-binding protein on the protein folding properties. After carrying out a simple optimization, we demonstrated that protein stability or unfolding kinetics could be measured accurately with just one detection measurement. We then further applied the optimized conditions to cellular thermal shift assay (CETSA). Combining one-pot analysis with CETSA led to a successful determination of the effects of the binding of methotrexate to dihydrofolate reductase in HCT116 cancer cells. Our results demonstrated the applicability of one-pot analysis to energetics-based methods for studying protein folding. We expect the combination of one-pot analysis and energetics-based methods to significantly benefit studies such as drug-target identification, proteomic investigations, and drug screening.
机译:为了良好地理解蛋白质的特征,研究其稳定性和折叠动力学非常重要。最近对蛋白质稳定性的研究已应用于药物 - 靶标鉴定,药物筛选和蛋白质组学研究。为研究蛋白质稳定性和折叠动力学进行的实验的效率现在是需要针对这些潜在应用进行优化的关键因素。然而,用于执行这些实验的标准程序通常是复杂和耗时的。大量测量是限制蛋白质折叠在大规模实验中的应用的瓶颈。为了克服这种限制,我们开发了一种表示为“单罐分析”的方法,该方法基于从样本的混合物而不是每个样品的单一测量。我们将单罐分析与脉冲蛋白分解组合以确定麦芽糖结合对麦芽糖结合蛋白对蛋白质折叠性能的影响。在进行简单的优化后,我们证明蛋白质稳定性或展开动力学可以仅用一个检测测量准确地测量。然后,我们进一步将优化的条件应用于细胞热移位测定(CETSA)。将单罐分析与CETSA相结合,成功测定了甲氨蝶呤与二氢脱水酸盐还原酶在HCT116癌细胞中的效果。我们的结果表明,一锅分析对学习蛋白质折叠的基于能量的方法的适用性。我们预计一盆分析和基于活性的方法的组合可以显着利益,例如药物 - 目标鉴定,蛋白质组学调查和药物筛查等研究。

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