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首页> 外文期刊>Protein engineering design & selection: PEDS >Tolerance of the archaeal Sac7d scaffold protein to alternative library designs: Characterization of anti-immunoglobulin G Affitins
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Tolerance of the archaeal Sac7d scaffold protein to alternative library designs: Characterization of anti-immunoglobulin G Affitins

机译:原始Sac7d支架蛋白对替代文库设计的耐受性:抗免疫球蛋白G Affitins的表征

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Engineered protein scaffolds have received considerable attention as alternatives to antibodies in both basic and applied research, as they can offer superior biophysical properties often associated with a simpler molecular organization. Sac7d has been demonstrated as an effective scaffold for molecular recognition. Here, we used the initial L1 'flat surface' library constructed by randomization of 14 residues, to identify ligands specific for human immunoglobulin G. To challenge the plasticity of the Sac7d protein scaffold, we designed the alternative L2 'flat surface & loops' library whereof only 10 residues are randomized. Representative binders (Affitins) of the two libraries exhibited affinities in the low nanomolar range and were able to recognize different epitopes within human immunoglobulin G. These Affitins were stable up to pH 12 while largely conserving other favorable properties of Sac7d protein, such as high expression yields in Escherichia coli, solubility, thermal stability up to 80.7°C, and acidic stability (pH 0). In agreement with our library designs, mutagenesis study revealed two distinct binding areas, one including loops. Together, our results indicate that the Sac7d scaffold tolerates alternative library designs, which further expands the diversity of Affitins and may provide a general way to create tailored affinity tools for demanding applications.
机译:在基础研究和应用研究中,工程化蛋白质支架作为抗体的替代品已受到相当多的关注,因为它们可以提供通常与更简单的分子组织相关的优越的生物物理特性。 Sac7d已被证明是一种有效的分子识别支架。在这里,我们使用通过随机化14个残基构建的初始L1“平坦表面”文库,以鉴定对人免疫球蛋白G特异性的配体。为了挑战Sac7d蛋白支架的可塑性,我们设计了替代L2“平坦表面和环”文库其中只有10个残基是随机的。两个文库的代表性结合剂(Affitins)在低纳摩尔范围内表现出亲和力,并且能够识别人免疫球蛋白G中的不同表位。这些Affitins在高达pH 12的条件下都稳定,同时在很大程度上保留了Sac7d蛋白的其他有利特性,例如高表达在大肠杆菌中的收率,溶解度,最高80.7°C的热稳定性和酸性稳定性(pH 0)。与我们的文库设计一致,诱变研究揭示了两个不同的结合区域,一个包括环。在一起,我们的结果表明,Sac7d支架能够耐受其他文库设计,这进一步扩大了Affitins的多样性,并可能为创建用于苛刻应用程序的量身定制的亲和力工具的一般方法。

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