Department of Chemistry, University of California, Berkeley, CA, 94720-1460, USA.
J Am Soc Mass Spectrom. 2013 Nov;24(11):1654-62. doi: 10.1007/s13361-013-0664-3. Epub 2013 Jun 4.
Changes in protein ion conformation as a result of nonspecific adduction of metal ions to the protein during electrospray ionization (ESI) from aqueous solutions were investigated using traveling wave ion mobility spectrometry (TWIMS). For all proteins examined, protein cations (and in most cases anions) with nonspecific metal ion adducts are more compact than the fully protonated (or deprotonated) ions with the same charge state. Compaction of protein cations upon nonspecific metal ion binding is most significant for intermediate charge state ions, and there is a greater reduction in collisional cross section with increasing number of metal ion adducts and increasing ion valency, consistent with an electrostatic interaction between the ions and the protein. Protein cations with the greatest number of adducted metal ions are no more compact than the lowest protonated ions formed from aqueous solutions. These results show that smaller collisional cross sections for metal-attached protein ions are not a good indicator of a specific metal-protein interaction in solution because nonspecific metal ion adduction also results in smaller gaseous protein cation cross sections. In contrast, the collisional cross section of α-lactalbumin, which specifically binds one Ca(2+), is larger for the holo-form compared with the apo-form, in agreement with solution-phase measurements. Because compaction of protein cations occurs when metal ion adduction is nonspecific, elongation of a protein cation may be a more reliable indicator that a specific metal ion-protein interaction occurs in solution.
在水溶液中通过电喷雾电离(ESI)时,由于非特异性金属离子加合到蛋白质上,导致蛋白质离子的构象发生变化,这一点通过行波离子迁移谱(TWIMS)进行了研究。对于所有检查的蛋白质,具有非特异性金属离子加合物的蛋白质阳离子(在大多数情况下还有阴离子)比具有相同电荷状态的完全质子化(或去质子化)离子更为紧凑。非特异性金属离子结合导致蛋白质阳离子的紧凑程度对于中等电荷状态的离子最为显著,并且随着金属离子加合物数量和离子价数的增加,碰撞截面的减小幅度更大,这与离子与蛋白质之间的静电相互作用一致。具有最多加合金属离子的蛋白质阳离子并不比从水溶液中形成的最低质子化离子更为紧凑。这些结果表明,对于溶液中的特定金属-蛋白质相互作用,较小的附着金属离子的碰撞截面并不是一个很好的指标,因为非特异性金属离子加合也会导致较小的气态蛋白质阳离子截面。相比之下,与去配位形式相比,特定结合一个 Ca(2+) 的全配位形式的乳白蛋白的碰撞截面更大,这与溶液相测量结果一致。由于非特异性金属离子加合导致蛋白质阳离子的紧凑化,因此蛋白质阳离子的伸长可能是溶液中发生特定金属离子-蛋白质相互作用的更可靠指标。