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ESI-IM-MS 和碰撞诱导去折叠,深入了解共价连接二泛素的连接依赖性界面相互作用。

ESI-IM-MS and Collision-Induced Unfolding That Provide Insight into the Linkage-Dependent Interfacial Interactions of Covalently Linked Diubiquitin.

机构信息

Department of Chemistry, Texas A&M University , College Station, Texas 77843, United States.

Department of Chemistry, Indiana University , Bloomington, Indiana 47405, United States.

出版信息

Anal Chem. 2017 Sep 19;89(18):10094-10103. doi: 10.1021/acs.analchem.7b02932. Epub 2017 Aug 31.

Abstract

Understanding protein higher order structure and interfacial interactions is crucial to understanding protein binding motifs and cellular function, that is, an interactome. Polyubiquitylation is a post-translational modification that functions as a tag for a diverse array of cellular processes, wherein differences in chain length, branching, and linkage site encode different cellular functions. Investigation of covalently linked diubiquitin (diUbq) molecules specifically selects for the effect of covalent linkage site on the conformational preference of the molecule and the interfacial interactions between the subunits. Here, we report results for electrospray ionization ion mobility-mass spectrometry (ESI-IM-MS) and collision-induced unfolding (CIU) analysis of four diUbq ions to provide new understanding of the differences in subunit interfacial interactions and conformational preferences induced by the four most common covalent linkage sites. The specific hydrophobic patch interface adopted by K48-linked diUbq results in unique CIU fingerprints dominated by conformational broadening and primarily gradual unfolding, as opposed to the distinct transitions through gas-phase unfolding intermediates observed of K6-, K11-, and K63-linked diUbq. Comparison of the intermediate conformational families of K6-, K11-, and K63-linked diUbq suggests that K6- and K11-linked diUbq adopt a mixture of conformers stabilized by either electrostatic interactions or hydrophobic interactions involving the I36 hydrophobic patch. Furthermore, conditions favoring the partially folded A-state of monoubiquitin, that is, methanolic solution, induce conformational collapse and distinct unfolding intermediates for all four linkage types, providing an end-point at which all solution-phase conformational "memory" has been lost.

摘要

理解蛋白质的高级结构和界面相互作用对于理解蛋白质结合基序和细胞功能(即相互作用组)至关重要。多泛素化是一种翻译后修饰,作为各种细胞过程的标签,其中链长、分支和连接位点的差异编码不同的细胞功能。共价连接二泛素(diUbq)分子的研究特别选择了共价连接位点对分子构象偏好和亚基之间界面相互作用的影响。在这里,我们报告了电喷雾电离离子淌度-质谱(ESI-IM-MS)和碰撞诱导解折叠(CIU)分析四种二泛素离子的结果,为了解四种最常见的共价连接位点引起的亚基界面相互作用和构象偏好差异提供了新的认识。K48 连接的 diUbq 采用的特定疏水区界面导致独特的 CIU 指纹,主要表现为构象变宽和主要是逐渐解折叠,而不是 K6-、K11-和 K63-连接的 diUbq 观察到的通过气相解折叠中间体的明显转变。K6-、K11-和 K63-连接的 diUbq 中间构象家族的比较表明,K6-和 K11-连接的 diUbq 采用通过静电相互作用或涉及 I36 疏水区的疏水相互作用稳定的构象混合物。此外,有利于单泛素部分折叠 A 态的条件,即甲醇溶液,诱导所有四种连接类型的构象崩溃和独特的解折叠中间体,为所有溶液相构象“记忆”都已丢失提供了终点。

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