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泛素样修饰激活酶7-泛素融合降解途径在E1-E2 ISGylation中的作用:基于核磁共振对E2结合动力学的见解

Role of Uba7-UFD in E1-E2 ISGylation: NMR-Based Insights into E2 Binding Dynamics.

作者信息

Dağ Çağdaş, Kazar Alp E, Kahraman Kerem, Göcenler Oktay, Lee Woonghee, Lambert Mahil, Tozkoparan Ceylan Cansu D, Shim Jin Gon, Haas Arthur L, Dötsch Volker, Ziarek Joshua J, Elgin Emine Sonay

出版信息

bioRxiv. 2025 Jun 19:2025.06.14.659664. doi: 10.1101/2025.06.14.659664.

Abstract

The ISGylation pathway, a key post-translational modification, plays a pivotal role in the innate immune response by covalently attaching ISG15 to target proteins. This cascade involves a series of enzymatic steps, including activation by the E1 enzyme Uba7, conjugation by the E2 enzyme UbcH8, and ligation by an E3 ligase. Central to this process is the ubiquitin-fold domain (UFD) of Uba7, which facilitates the transfer of ISG15 to UbcH8. However, the structural and mechanistic details of this interaction remain poorly understood. In this work, we present the solution NMR structure and functional analysis of the ubiquitin-fold domain of human Uba7, the E1 enzyme in the ISGylation cascade. Through detailed NMR titration experiments and mutational studies, we mapped the interaction surface of Uba7-UFD with UbcH8, identifying key residues and their contributions to the E1-E2 interaction. Our results reveal that Uba7-UFD exhibits flexibility in its free form, adopting a more ordered conformation upon binding UbcH8. Chemical shift perturbation and mutational analysis further demonstrate the importance of specific residues, particularly Cys996, in maintaining UFD's structural integrity and binding capacity. Additionally, mutations designed to alter the flexibility and length of the loop region between UFD and UbcH8 show significant effects on binding, indicating that these regions are crucial for efficient E2 recruitment. These findings provide new insights into the mechanistic basis of E2 enzyme selection in ISGylation and underscore the functional relevance of dynamic structural transitions in E1-E2 complex formation.

摘要

ISGylation途径是一种关键的翻译后修饰,通过将ISG15共价连接到靶蛋白上,在先天免疫反应中发挥关键作用。这一级联反应涉及一系列酶促步骤,包括由E1酶Uba7激活、由E2酶UbcH8缀合以及由E3连接酶连接。这一过程的核心是Uba7的泛素折叠结构域(UFD),它促进了ISG15向UbcH8的转移。然而,这种相互作用的结构和机制细节仍知之甚少。在这项工作中,我们展示了人类Uba7(ISGylation级联反应中的E1酶)的泛素折叠结构域的溶液核磁共振结构和功能分析。通过详细的核磁共振滴定实验和突变研究,我们绘制了Uba7-UFD与UbcH8的相互作用表面,确定了关键残基及其对E1-E2相互作用的贡献。我们的结果表明,Uba7-UFD在其游离形式下具有灵活性,在结合UbcH8时会采取更有序的构象。化学位移扰动和突变分析进一步证明了特定残基,特别是Cys996,在维持UFD的结构完整性和结合能力方面的重要性。此外,设计用于改变UFD和UbcH8之间环区灵活性和长度的突变对结合有显著影响,表明这些区域对于有效招募E2至关重要。这些发现为ISGylation中E2酶选择的机制基础提供了新的见解,并强调了E1-E2复合物形成中动态结构转变的功能相关性。

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