Bruce J E, Smith V F, Liu C, Randall L L, Smith R D
Environmental and Molecular Sciences Laboratory, The Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
Protein Sci. 1998 May;7(5):1180-5. doi: 10.1002/pro.5560070512.
Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) was applied for the study of noncovalent chaperone SecB-ligand complexes produced in solution and examined in the gas phase with the aid of electrospray ionization (ESI). Since chaperone proteins are believed to recognize and bind only with ligands with nonnative tertiary structure, this work required careful unfolding of the ligand and subsequent reaction with the intact chaperone (the noncovalent tetrameric protein, SecB). A high denaturant concentration was employed to produce nonnative structures of the OppA, and microdialysis of the resulting solutions containing the chaperone-ligand complexes was carried out to rapidly remove the denaturant prior to analysis. Multistage mass spectrometry was essential to the successful study of these complexes since the initial mass spectra indicated extensive adduction that precluded mass measurements, even after microdialysis. However, low energy collisional activation of the ions in the FTICR trap proved useful for adduct removal, and careful control of excitation level preserved the intact complexes of interest, revealing a 1:1 SecB:OppA stoichiometry. To our knowledge, these results present the first direct observation of chaperone-ligand noncovalent complexes and the highest molecular weight heterogeneous noncovalent complex observed to date by mass spectrometry. Furthermore, these results highlight the capabilities of FTICR for the study of such complex systems, and the development of a greater understanding of chaperone interactions in protein export.
傅里叶变换离子回旋共振质谱法(FTICR-MS)被用于研究在溶液中产生并借助电喷雾电离(ESI)在气相中检测的非共价伴侣蛋白SecB-配体复合物。由于伴侣蛋白被认为仅与具有非天然三级结构的配体识别并结合,这项工作需要对配体进行仔细的去折叠,并随后与完整的伴侣蛋白(非共价四聚体蛋白SecB)反应。采用高浓度变性剂来产生OppA的非天然结构,并对所得含有伴侣蛋白-配体复合物的溶液进行微透析,以便在分析之前快速去除变性剂。多级质谱对于这些复合物的成功研究至关重要,因为初始质谱表明存在广泛的加合现象,即使经过微透析后也妨碍了质量测量。然而,FTICR阱中离子的低能量碰撞激活被证明对去除加合物很有用,并且对激发水平的仔细控制保留了感兴趣的完整复合物,揭示了1:1的SecB:OppA化学计量比。据我们所知,这些结果首次直接观察到伴侣蛋白-配体非共价复合物,以及迄今为止通过质谱观察到的最高分子量的异质非共价复合物。此外,这些结果突出了FTICR在研究此类复杂系统方面的能力,以及对蛋白质输出中伴侣蛋白相互作用有更深入理解的进展。