首页> 外文期刊>Protein Science: A Publication of the Protein Society >Direct measurement of protein osmotic second virial cross coefficients by cross-interaction chromatography.
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Direct measurement of protein osmotic second virial cross coefficients by cross-interaction chromatography.

机译:通过交叉相互作用色谱法直接测量蛋白质渗透第二病毒交叉系数。

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摘要

The importance of weak protein interactions, such as protein self-association, is widely recognized in a variety of biological and technological processes. Although protein self-association has been studied extensively, much less attention has been devoted to weak protein cross-association, mainly due to the difficulties in measuring weak interactions between different proteins in solution. Here a framework is presented for quantifying the osmotic second virial cross coefficient directly using a modified form of self-interaction chromatography called cross-interaction chromatography. A theoretical relationship is developed between the virial cross coefficient and the chromatographic retention using statistical mechanics. Measurements of bovine serum albumin (BSA)/lysozyme cross-association using cross-interaction chromatography agree well with the few osmometry measurements available in the literature. Lysozyme/alpha-chymotrypsinogen interactions were also measured over a wide range of solution conditions, and some counterintuitive trends were observed that may provide new insight into the molecular origins of weak protein interactions. The virial cross coefficients presented in this work may also provide insight into separation processes that are influenced by protein cross-interactions, such as crystallization, precipitation, and ultrafiltration.
机译:弱蛋白质相互作用(例如蛋白质自缔合)的重要性已在各种生物学和技术过程中得到广泛认可。尽管已经广泛研究了蛋白质自缔合,但是对蛋白质弱缔合的关注却很少,这主要是由于难以测量溶液中不同蛋白质之间的弱相互作用。在这里,我们提出了一个框架,可使用一种称为交叉相互作用色谱的改进型自相互作用色谱直接对渗透第二维里交叉系数进行定量。使用统计机制在病毒交叉系数和色谱保留之间建立了理论关系。使用交叉相互作用色谱法测量牛血清白蛋白(BSA)/溶菌酶的交叉缔合与文献中的少量渗透压测量法非常吻合。溶菌酶/α-胰凝乳蛋白酶原相互作用也在广泛的溶液条件下进行了测量,并且观察到一些与直觉相反的趋势,这些趋势可能为弱蛋白相互作用的分子起源提供新的见解。这项工作中提出的病毒交叉系数还可以提供对受蛋白质交叉相互作用(例如结晶,沉淀和超滤)影响的分离过程的深入了解。

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