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分子胶形成的复合物的原位质谱揭示了 E3 连接酶的化学计量重排。

Native mass spectrometry of complexes formed by molecular glues reveals stoichiometric rearrangement of E3 ligases.

机构信息

Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow, UK.

出版信息

Analyst. 2024 May 28;149(11):3178-3185. doi: 10.1039/d4an00110a.

Abstract

In this application of native mass spectrometry (nMS) to investigate complexes formed by molecular glues (MGs), we have demonstrated its efficiency in delineating stoichiometric rearrangements of E3 ligases that occur during targeted protein degradation (TPD). MGs stabilise interactions between an E3 ligase and a protein of interest (POI) targeted for degradation, and these ternary interactions are challenging to characterise. We have shown that nMS can unambiguously identify complexes formed between the CRBN : DDB1 E3 ligase and the POI GSPT1 upon the addition of lenalidomide, pomalidomide or thalidomide. Ternary complex formation was also identified involving the DCAF15 : DDA1 : DDB1 E3 ligase in the presence of MG (E7820 or indisulam) and POI RBM39. Moreover, we uncovered that the DCAF15 : DDA1 : DDB1 E3 ligase self-associates into dimers and trimers when analysed alone at low salt concentrations (100 mM ammonium acetate) which dissociate into single copies of the complex at higher salt concentrations (500 mM ammonium acetate), or upon the addition of MG and POI, forming a 1 : 1 : 1 ternary complex. This work demonstrates the strength of nMS in TPD research, reveals novel binding mechanisms of the DCAF15 E3 ligase, and its self-association into dimers and trimers at reduced salt concentration during structural analysis.

摘要

在这项应用天然质谱(nMS)研究分子胶(MGs)形成的复合物的研究中,我们证明了它在描绘靶向蛋白降解(TPD)过程中 E3 连接酶发生的化学计量重排方面的效率。MGs 稳定 E3 连接酶和目标降解的蛋白(POI)之间的相互作用,这些三元相互作用难以表征。我们已经表明,nMS 可以明确识别 CRBN-DDB1 E3 连接酶与加入来那度胺、泊马度胺或沙利度胺后的 POI GSPT1 之间形成的复合物。还鉴定了涉及 DCAF15-DDA1-DDB1 E3 连接酶和 POI RBM39 的三元复合物形成,在存在 MG(E7820 或 indisulam)和 POI 时。此外,我们发现 DCAF15-DDA1-DDB1 E3 连接酶在低盐浓度(100mM 醋酸铵)下单独分析时会自组装成二聚体和三聚体,在高盐浓度(500mM 醋酸铵)下会解离成复合物的单拷贝,或在加入 MG 和 POI 时,形成 1:1:1 的三元复合物。这项工作证明了 nMS 在 TPD 研究中的优势,揭示了 DCAF15 E3 连接酶的新结合机制,以及在结构分析过程中在低盐浓度下自组装成二聚体和三聚体的机制。

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