Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, Ontario M5G 1X5, Canada.
Department of Biochemistry, University of Toronto, Toronto, Ontario M5S 1A8, Canada.
Protein Sci. 2019 May;28(5):848-856. doi: 10.1002/pro.3593. Epub 2019 Mar 12.
We previously described structural and functional characterization of the first ubiquitin variant (UbV), UbV.v27.1, engineered by phage display to bind with high affinity to a specific ubiquitin interacting motif (UIM). We identified two substitutions relative to ubiquitin (Gly10Val/His68Tyr) that were critical for enhancing binding affinity but could only rationalize the mechanism of action of the Tyr68 substitution. Here, we extend our characterization and uncover the mechanism by which the Val10 substitution enhances binding affinity. We show that Val10 in UbV.v27.1 drives UbV dimerization through an intermolecular β-strand exchange. Dimerization serves to increase the contact surface between the UIM and UbV and also affords direct contacts between two UIMs through an overall 2:2 binding stoichiometry. Our identification of the role of Val10 in UbV dimerization suggests a general means for the development of dimeric UbVs with improved affinity and specificity relative to their monomeric UbV counterparts. Statement: Previously, we used phage display to engineer a UbV that bound tightly and specifically to a UIM. Here, we discovered that tight binding is partly due to the dimerization of the UbV, which increases the contact surface between the UbV and UIM. We show that UbV dimerization is dependent on the Gly10Val substitution, and posit that dimerization may provide a general means for engineering UbVs with improved binding properties.
我们之前通过噬菌体展示技术,设计了一种能够与特定泛素相互作用基序(UIM)高亲和力结合的第一个泛素变体(UbV)UbV.v27.1,并对其结构和功能进行了描述。我们发现相对于泛素(Gly10Val/His68Tyr)有两个取代基对于提高结合亲和力是至关重要的,但只能合理推断 Tyr68 取代基的作用机制。在这里,我们扩展了我们的表征,并揭示了 Val10 取代基增强结合亲和力的机制。我们表明,UbV.v27.1 中的 Val10 通过分子间β-链交换驱动 UbV 二聚化。二聚化通过增加 UIM 和 UbV 之间的接触表面积,并通过整体 2:2 的结合化学计量比在两个 UIM 之间提供直接接触,从而增加了结合亲和力。我们鉴定了 Val10 在 UbV 二聚化中的作用,这表明了一种通用的方法,可用于开发具有改善的亲和力和特异性的二聚体 UbV,相对于它们的单体 UbV 对应物。
此前,我们使用噬菌体展示技术来设计与 UIM 紧密且特异性结合的 UbV。在这里,我们发现紧密结合部分是由于 UbV 的二聚化,这增加了 UbV 和 UIM 之间的接触表面积。我们表明 UbV 二聚化依赖于 Gly10Val 取代,并假设二聚化可能为工程化具有改善结合特性的 UbV 提供一种通用方法。