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Identification of excipient-protein interaction hotspots using computational approaches

机译:使用计算方法鉴定赋形剂 - 蛋白质相互作用热点

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摘要

Protein formulation development relies on the selection of excipients that inhibit protein-protein interactions preventing aggregation. Empirical strategies involve screening many excipient and buffer combinations using force degradation studies. Such methods do not readily provide information on intermolecular interactions responsible for the protective effects of excipients. This study describes a molecular docking approach to screen and rank interactions allowing for the identification of protein-excipients hotspots to aid in the selection of excipients to be experimentally screened. Previously published work with Drosophila Su(dx) was used to develop and validate the computational methodology which was then used to determine the formulation hotspots for Fab A33. Commonly used excipients were examined and compared to the regions in Fab A33 prone to protein-protein interactions that could lead to aggregation. This approach could provide information on a molecular level about the protective interactions of excipients in protein formulations to aid the more rational development of future formulations.
机译:蛋白质制剂的开发依赖于抑制蛋白质-蛋白质相互作用而阻止聚集的赋形剂的选择。实证策略涉及使用力降解研究筛选许多赋形剂和缓冲剂组合。这样的方法不容易提供有关引起赋形剂保护作用的分子间相互作用的信息。这项研究描述了一种分子对接方法来筛选和排序相互作用,从而鉴定蛋白质-赋形剂热点,以帮助选择要进行实验筛选的赋形剂。使用果蝇Su(dx)先前发布的成果来开发和验证计算方法,然后将其用于确定Fab A33的配方热点。检查了常用的赋形剂,并将其与Fab A33中易于发生蛋白-蛋白相互作用(可能导致聚集)的区域进行比较。这种方法可以在分子水平上提供有关蛋白质制剂中赋形剂的保护性相互作用的信息,以帮助未来制剂的更合理开发。

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