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本文引用的文献

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Ligand binding to a G protein-coupled receptor captured in a mass spectrometer.配体与在质谱仪中捕获的 G 蛋白偶联受体结合。
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Native MS Analysis of Bacteriorhodopsin and an Empty Nanodisc by Orthogonal Acceleration Time-of-Flight, Orbitrap and Ion Cyclotron Resonance.利用正交加速飞行时间、轨道阱和离子回旋共振对菌紫质和空纳米盘进行原位质谱分析。
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Characterization of Membrane Protein-Lipid Interactions by Mass Spectrometry Ion Mobility Mass Spectrometry.用质谱离子淌度质谱法对膜蛋白-脂质相互作用进行表征。
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Interfacing Membrane Mimetics with Mass Spectrometry.界面膜模拟与质谱联用。
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Hydration Dynamics of a Peripheral Membrane Protein.外周膜蛋白的水动力。
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Infrared Laser Activation of Soluble and Membrane Protein Assemblies in the Gas Phase.气相中可溶性和膜蛋白组装体的红外激光激活。
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Determining Membrane Protein-Lipid Binding Thermodynamics Using Native Mass Spectrometry.利用天然质谱法测定膜蛋白-脂质结合热力学。
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Examining the Heterogeneous Genome Content of Multipartite Viruses BMV and CCMV by Native Mass Spectrometry.通过原生质谱法检测多分体病毒 BMV 和 CCMV 的异质基因组含量。
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A simple heated-capillary modification improves the analysis of non-covalent complexes by Z-spray electrospray ionization.一种简单的加热毛细管改进方法可通过Z喷雾电喷雾电离改善非共价复合物的分析。
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傅里叶变换离子回旋共振质谱作为一种用于鉴定多聚体膜蛋白复合物的平台。

Fourier Transform-Ion Cyclotron Resonance Mass Spectrometry as a Platform for Characterizing Multimeric Membrane Protein Complexes.

机构信息

Discovery Attribute Sciences, Amgen, Thousand Oaks, CA, 91320, USA.

Department of Chemistry and Biochemistry, University of California-Los Angeles, Los Angeles, CA, 90095, USA.

出版信息

J Am Soc Mass Spectrom. 2018 Jan;29(1):183-193. doi: 10.1007/s13361-017-1799-4. Epub 2017 Oct 2.

DOI:10.1007/s13361-017-1799-4
PMID:28971338
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5786498/
Abstract

Membrane protein characterization is consistently hampered by challenges with expression, purification, and solubilization. Among several biophysical techniques employed for their characterization, native-mass spectrometry (MS) has emerged as a powerful tool for the analysis of membrane proteins and complexes. Here, two MS platforms, the FT-ICR and Q-ToF, have been explored to analyze the homotetrameric water channel protein, AquaporinZ (AqpZ), under non-denaturing conditions. This 97 kDa membrane protein complex can be readily liberated from the octylglucoside (OG) detergent micelle under a range of instrument conditions on both MS platforms. Increasing the applied collision energy of the FT-ICR collision cell yielded varying degrees of tetramer (97 kDa) liberation from the OG micelles, as well as dissociation into the trimeric (72 kDa) and monomeric (24 kDa) substituents. Tandem-MS on the Q-ToF yielded higher intensity tetramer signal and, depending on the m/z region selected, the observed monomer signal varied in intensity. Precursor ion selection of an m/z range above the expected protein signal distribution, followed by mild collisional activation, is able to efficiently liberate AqpZ with a high S/N ratio. The tetrameric charge state distribution obtained on both instruments demonstrated superpositioning of multiple proteoforms due to varying degrees of N-terminal formylation. Graphical Abstract ᅟ.

摘要

膜蛋白的特性分析一直受到表达、纯化和溶解等方面的挑战。在用于其特性分析的几种生物物理技术中,天然质谱(MS)已成为分析膜蛋白和复合物的有力工具。在这里,我们探索了两种 MS 平台(傅立叶变换离子回旋共振和 Q-ToF),以在非变性条件下分析同源四聚体水通道蛋白 AquaporinZ(AqpZ)。这种 97 kDa 的膜蛋白复合物可以在两种 MS 平台的一系列仪器条件下,很容易地从辛基葡糖苷(OG)胶束中释放出来。增加傅立叶变换离子回旋共振碰撞池的施加碰撞能量,可在一定程度上将四聚体(97 kDa)从 OG 胶束中释放出来,并解离成三聚体(72 kDa)和单体(24 kDa)亚基。在 Q-ToF 上进行串联-MS,可获得更高强度的四聚体信号,并且根据所选的 m/z 区域,观察到的单体信号的强度也会有所不同。选择高于预期蛋白信号分布的 m/z 范围进行前体离子选择,然后进行温和的碰撞激活,能够有效地以高 S/N 比释放 AqpZ。两种仪器上获得的四聚体荷质比分布显示,由于 N 端甲酰化程度不同,存在多种蛋白形式的叠加。