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ASHH2 CW结构域对H3K4me1配体的结合特异性通过其α1螺旋与其结构稳定性相关联。

Binding Specificity of ASHH2 CW Domain Toward H3K4me1 Ligand Is Coupled to Its Structural Stability Through Its α1-Helix.

作者信息

Bril'kov Maxim S, Dobrovolska Olena, Ødegård-Fougner Øyvind, Turcu Diana C, Strømland Øyvind, Underhaug Jarl, Aasland Rein, Halskau Øyvind

机构信息

Department of Biological Sciences, University of Bergen, Bergen, Norway.

Department of Pharmacy, University of Tromsø, Tromsø, Norway.

出版信息

Front Mol Biosci. 2022 Apr 13;9:763750. doi: 10.3389/fmolb.2022.763750. eCollection 2022.

Abstract

The CW domain binds to histone tail modifications found in different protein families involved in epigenetic regulation and chromatin remodeling. CW domains recognize the methylation state of the fourth lysine on histone 3 and could, therefore, be viewed as a reader of epigenetic information. The specificity toward different methylation states such as me1, me2, or me3 depends on the particular CW subtype. For example, the CW domain of ASHH2 methyltransferase binds preferentially to H3K4me1, and MORC3 binds to both H3K4me2 and me3 modifications, while ZCWPW1 is more specific to H3K4me3. The structural basis for these preferential bindings is not well understood, and recent research suggests that a more complete picture will emerge if dynamical and energetic assessments are included in the analysis of interactions. This study uses fold assessment by NMR in combination with mutagenesis, ITC affinity measurements, and thermal denaturation studies to investigate possible couplings between ASHH2 CW selectivity toward H3K4me1 and the stabilization of the domain and loops implicated in binding. The key elements of the binding site-the two tryptophans and the α1-helix form and maintain the binding pocket- were perturbed by mutagenesis and investigated. Results show that the α1-helix maintains the overall stability of the fold via the I915 and L919 residues and that the correct binding consolidates the loops designated as η1 and η3, as well as the C-terminal. This consolidation is incomplete for H3K4me3 binding to CW, which experiences a decrease in overall thermal stability on binding. Loop mutations not directly involved in the binding site, nonetheless, affect the equilibrium positions of the key residues.

摘要

CW结构域与参与表观遗传调控和染色质重塑的不同蛋白质家族中的组蛋白尾部修饰相结合。CW结构域识别组蛋白3上第四个赖氨酸的甲基化状态,因此可被视为表观遗传信息的读取器。对不同甲基化状态(如me1、me2或me3)的特异性取决于特定的CW亚型。例如,ASHH2甲基转移酶的CW结构域优先与H3K4me1结合,MORC3与H3K4me2和me3修饰都结合,而ZCWPW1对H3K4me3更具特异性。这些优先结合的结构基础尚不清楚,最近的研究表明,如果在相互作用分析中纳入动力学和能量评估,将会出现更完整的情况。本研究使用核磁共振的折叠评估结合诱变、等温滴定量热法亲和力测量和热变性研究,来探究ASHH2的CW结构域对H3K4me1的选择性与结构域及参与结合的环的稳定性之间可能存在的耦合关系。结合位点的关键元件——两个色氨酸和α1螺旋形成并维持结合口袋——通过诱变进行扰动并加以研究。结果表明,α1螺旋通过I915和L919残基维持折叠的整体稳定性,正确的结合巩固了被指定为η1和η3的环以及C末端。对于H3K4me3与CW的结合,这种巩固并不完全,其结合时整体热稳定性会降低。然而,不直接参与结合位点的环突变会影响关键残基的平衡位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d07b/9043364/2f0580e31f00/fmolb-09-763750-g001.jpg

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