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一种经过工程改造以紧密且特异性结合α-螺旋泛素相互作用基序的泛素变体的结构与功能表征。

Structural and functional characterization of a ubiquitin variant engineered for tight and specific binding to an alpha-helical ubiquitin interacting motif.

作者信息

Manczyk Noah, Yates Bradley P, Veggiani Gianluca, Ernst Andreas, Sicheri Frank, Sidhu Sachdev S

机构信息

Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, Ontario, M5G 1X5, Canada.

Department of Biochemistry, University of Toronto, Toronto, Ontario, M5S 1A8, Canada.

出版信息

Protein Sci. 2017 May;26(5):1060-1069. doi: 10.1002/pro.3155. Epub 2017 Mar 24.

Abstract

Ubiquitin interacting motifs (UIMs) are short α-helices found in a number of eukaryotic proteins. UIMs interact weakly but specifically with ubiquitin conjugated to other proteins, and in so doing, mediate specific cellular signals. Here we used phage display to generate ubiquitin variants (UbVs) targeting the N-terminal UIM of the yeast Vps27 protein. Selections yielded UbV.v27.1, which recognized the cognate UIM with high specificity relative to other yeast UIMs and bound with an affinity more than two orders of magnitude higher than that of ubiquitin. Structural and mutational studies of the UbV.v27.1-UIM complex revealed the molecular details for the enhanced affinity and specificity of UbV.v27.1, and underscored the importance of changes at the binding interface as well as at positions that do not contact the UIM. Our study highlights the power of the phage display approach for selecting UbVs with unprecedented affinity and high selectivity for particular α-helical UIM domains within proteomes, and it establishes a general approach for the development of inhibitors targeting interactions of this type.

摘要

泛素相互作用基序(UIMs)是在许多真核生物蛋白质中发现的短α螺旋。UIMs与缀合到其他蛋白质上的泛素发生弱但特异性的相互作用,并通过这种方式介导特定的细胞信号。在这里,我们使用噬菌体展示技术来生成靶向酵母Vps27蛋白N端UIM的泛素变体(UbVs)。筛选得到了UbV.v27.1,相对于其他酵母UIMs,它能以高特异性识别同源UIM,并且结合亲和力比泛素高两个多数量级。对UbV.v27.1-UIM复合物的结构和突变研究揭示了UbV.v27.1亲和力和特异性增强的分子细节,并强调了结合界面以及不与UIM接触的位置发生变化的重要性。我们的研究突出了噬菌体展示方法在选择对蛋白质组中特定α螺旋UIM结构域具有前所未有的亲和力和高选择性的UbVs方面的强大功能,并且建立了一种开发针对此类相互作用的抑制剂的通用方法。

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