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Determining protein stability in cell lysates by pulse proteolysis and Western blotting

机译:通过脉冲蛋白水解和Western印迹测定细胞裂解液中的蛋白质稳定性

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摘要

Proteins require proper conformational energetics to fold and to function correctly. Despite the importance of having information on conformational energetics, the investigation of thermodynamic stability has been limited to proteins, which can be easily expressed and purified. Many biologically important proteins are not suitable for conventional biophysical investigation because of the difficulty of expression and purification. As an effort to overcome this limitation, we have developed a method to determine the thermodynamic stability of low abundant proteins in cell lysates. Previously, it was demonstrated that protein stability can be determined quantitatively by measuring the fraction of folded proteins with a pulse of proteolysis (Pulse proteolysis). Here, we show that thermodynamic stability of low abundant proteins can be determined reliably in cell lysates by combining pulse proteolysis with quantitative Western blotting (Pulse and Western). To demonstrate the reliability of this method, we determined the thermodynamic stability of recombinant human H-ras added to lysates of E. coli and human Jurkat T cells. Comparison with the thermodynamic stability determined with pure H-ras revealed that Pulse and Western is a reliable way to monitor protein stability in cell lysates and the stability of H-ras is not affected by other proteins present in cell lysates. This method allows the investigation of conformational energetics of proteins in cell lysates without cloning, purification, or labeling.
机译:蛋白质需要适当的构象能学才能折叠并正常运行。尽管获得有关构象能量学信息的重要性,但热力学稳定性的研究仅限于蛋白质,蛋白质可以轻松表达和纯化。由于表达和纯化困难,许多生物学上重要的蛋白质不适合常规的生物物理研究。为了克服这一限制,我们开发了一种确定细胞裂解物中低丰度蛋白质的热力学稳定性的方法。以前,已证明可以通过使用蛋白水解脉冲(脉冲蛋白水解)测量折叠的蛋白质的比例来定量确定蛋白质的稳定性。在这里,我们表明可以通过结合脉冲蛋白水解与定量蛋白质印迹(脉冲和蛋白质印迹)可靠地确定细胞裂解物中低丰度蛋白质的热力学稳定性。为了证明该方法的可靠性,我们确定了添加至大肠杆菌和人Jurkat T细胞裂解物中的重组人H-ras的热力学稳定性。与用纯H-ras测定的热力学稳定性比较,发现Pulse和Western是监测细胞裂解物中蛋白质稳定性的可靠方法,并且H-ras的稳定性不受细胞裂解物中其他蛋白质的影响。此方法无需克隆,纯化或标记即可研究细胞裂解物中蛋白质的构象能量。

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