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An improved Protein G with higher affinity for human/rabbit IgG Fc domains exploiting a computationally designed polar network

机译:一种改进的蛋白质G其通过计算设计的极性网络对人/兔IgG Fc域具有更高的亲和力

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摘要

Protein G is an IgG binding protein that has been widely exploited for biotechnological purposes. Rosetta protein modeling identified a set of favorable polar mutations in Protein G, at its binding interface with the Fc domain of Immunoglobulin G, that were predicted to increase the stability and tighten the binding relative to native Protein G, with only a minor perturbation of the binding mode seen in the crystal structure. This triple mutant was synthesized and evaluated experimentally. Relative to the native protein G, the mutant showed a 3.5-fold enhancement in display level on the surface of yeast and a 5-fold tighter molar affinity for rabbit and human IgG. We attribute the improved affinity to a network of hydrogen bonds exploiting specific polar groups on human and rabbit Fc. The relative specificity increased as well since there was little affinity enhancement for goat and mouse Fc, while the affinity for rat Fc was poorer by half. This designed Protein G will be useful in biotechnological applications as a recombinant protein, where its improved affinity, display and specificity will increase antibody capture sensitivity and capacity. Furthermore, the display of this protein on the surface of yeast introduces the concept of the use of yeast as an affinity matrix.
机译:蛋白G是一种已被广泛用于生物技术目的的IgG结合蛋白。 Rosetta蛋白建模在其与免疫球蛋白G的Fc结构域的结合界面处发现了蛋白G中的一组有利的极性突变,预计这些突变会增加稳定性并相对于天然蛋白G收紧结合,而对蛋白G的干扰很小。在晶体结构中看到的结合模式。合成该三重突变体并进行实验评估。相对于天然蛋白G,该突变体在酵母表面的展示水平提高了3.5倍,对兔和人IgG的摩尔亲和力提高了5倍。我们将改善的亲和力归因于利用人和兔Fc上特定极性基团的氢键网络。相对特异性也增加,因为与山羊和小鼠Fc的亲和力几乎没有增加,而与大鼠Fc的亲和力却降低了一半。这种设计的Protein G作为重组蛋白在生物技术应用中将很有用,其改良的亲和力,展示性和特异性将提高抗体捕获的敏感性和能力。此外,该蛋白质在酵母表面上的展示引入了将酵母用作亲和基质的概念。

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