Discovery Attribute Sciences, Amgen, Thousand Oaks, CA, 91320, USA.
Department of Chemistry and Biochemistry, University of California-Los Angeles, Los Angeles, CA, 90095, USA.
J Am Soc Mass Spectrom. 2018 Jan;29(1):183-193. doi: 10.1007/s13361-017-1799-4. Epub 2017 Oct 2.
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.
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。