Water Plays Key Roles in Stabilities of Wild Type and Mutant Transthyretin Complexes.

IF 3.1 2区 化学 Q2 BIOCHEMICAL RESEARCH METHODS
Carter Lantz, Robert L Rider, Sangho D Yun, Arthur Laganowsky, David H Russell
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Abstract

Transthyretin (TTR), a 56 kDa homotetramer that is involved in the transport of thyroxine and retinol, has been linked to amyloidosis through disassembly of tetramers to form monomers, dimers, and trimers that then reassemble into higher order oligomers and/or fibrils. Hybrid TTR (hTTR) tetramers are found in heterozygous individuals that express both wild type TTR (wt-TTR) and mutant TTR (mTTR) forms of the protein, and these states display increased rates of amyloidosis. Here we monitor subunit exchange (SUE) reactions involving homomeric and mixed tetramers using high resolution native mass spectrometry (nMS). Our results show evidence that differences in TTR primary structure alter tetramer stabilities, and hTTR products can form spontaneously by SUE reactions. In addition, we find that solution temperature has strong effects on TTR tetramer stabilities and formation of SUE products. Lower temperatures promote formation of hTTR tetramers containing L55P and V30M subunits, whereas small effects on the formation of hTTR tetramers containing F87A and T119M subunits are observed. We hypothesize that the observed temperature dependent stabilities and subsequent SUE behavior are a result of perturbations to the network of "two kinds of water": hydrating and structure stabilizing water molecules (Spyrakis et al. J. Med. Chem. 2017, 60 (16), 6781-6827; Xu et al. Soft Matter 2012, 8, 324-336) that stabilize wt-TTR and mTTR tetramers. The results presented in this work illustrate the utility of high resolution nMS for studies of the structures, stabilities, and dynamics of protein complexes that directly influence SUE reactions.

Abstract Image

水在野生型和突变型转甲状腺素复合物的稳定性中发挥关键作用
转甲状腺素(TTR)是一种 56 kDa 的同源四聚体,参与甲状腺素和视黄醇的转运,通过分解四聚体形成单体、二聚体和三聚体,然后重新聚集成高阶寡聚体和/或纤维,从而与淀粉样变性有关。杂合 TTR(hTTR)四聚体存在于同时表达野生型 TTR(wt-TTR)和突变型 TTR(mTTR)蛋白的杂合个体中,这些状态会增加淀粉样变性的发生率。在这里,我们利用高分辨率原生质谱(nMS)监测了涉及同源四聚体和混合四聚体的亚基交换(SUE)反应。我们的研究结果表明,有证据表明 TTR 一级结构的差异会改变四聚体的稳定性,而且 hTTR 产物可通过 SUE 反应自发形成。此外,我们还发现溶液温度对 TTR 四聚体的稳定性和 SUE 产物的形成有很大影响。较低的温度会促进含有 L55P 和 V30M 亚基的 hTTR 四聚体的形成,而对含有 F87A 和 T119M 亚基的 hTTR 四聚体的形成影响较小。我们假设,观察到的随温度变化的稳定性和随后的 SUE 行为是 "两种水 "网络受到扰动的结果:水合水分子和结构稳定水分子(Spyrakis 等人,J. Med.Chem.2017,60 (16),6781-6827;Xu 等,Soft Matter 2012,8,324-336),稳定了 wt-TTR 和 mTTR 四聚体。这项工作中展示的结果说明了高分辨率 nMS 在研究直接影响 SUE 反应的蛋白质复合物的结构、稳定性和动力学方面的实用性。
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来源期刊
CiteScore
5.50
自引率
9.40%
发文量
257
审稿时长
1 months
期刊介绍: The Journal of the American Society for Mass Spectrometry presents research papers covering all aspects of mass spectrometry, incorporating coverage of fields of scientific inquiry in which mass spectrometry can play a role. Comprehensive in scope, the journal publishes papers on both fundamentals and applications of mass spectrometry. Fundamental subjects include instrumentation principles, design, and demonstration, structures and chemical properties of gas-phase ions, studies of thermodynamic properties, ion spectroscopy, chemical kinetics, mechanisms of ionization, theories of ion fragmentation, cluster ions, and potential energy surfaces. In addition to full papers, the journal offers Communications, Application Notes, and Accounts and Perspectives
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