Xia Zije, Williams Evan R
Department of Chemistry, University of California, Berkeley, CA, 94720-1460, USA.
J Am Soc Mass Spectrom. 2018 Jan;29(1):194-202. doi: 10.1007/s13361-017-1825-6. Epub 2017 Oct 12.
Theta glass electrospray emitters can rapidly mix solutions to investigate fast reactions that occur as quickly as 1 μs, but emitters with submicron tips have the unusual properties of desalting protein ions and affecting the observed abundances of some proteins as a result of protein-surface interactions. The role of protein physical properties on ion signal was investigated using 1.7 ± 0.1 μm and 269 ± 7 nm emitters and 100 mM aqueous ammonium acetate or ammonium bicarbonate solutions. Protein ion desalting occurs for both positive and negative ions. The signal of a mixture of proteins with the 269 nm tips is time-dependent and the order in which ions of each protein is observed is related to the expected strengths of the protein-surface interactions. These results indicate that it is not just the high surface-to-volume ratio that plays a role in protein adsorption and reduction or absence of initial ion signal, but the small diffusion distance and extremely low flow rates of the smaller emitters can lead to complete adsorption of some proteins and loss of signal until the adsorption sites are filled and the zeta potential is significantly reduced. After about 30 min, signals for a protein mixture from the two different size capillaries are similar. These results show the advantages of submicron emitters but also indicate that surface effects must be taken into account in experiments using such small tips or that coating the emitter surface to prevent adsorption should be considered. Graphical Abstract.
θ玻璃电喷雾发射器可以快速混合溶液,以研究发生速度快至1微秒的快速反应,但具有亚微米尖端的发射器具有脱盐蛋白质离子的特殊性质,并且由于蛋白质-表面相互作用,会影响某些蛋白质的观测丰度。使用1.7±0.1微米和269±7纳米的发射器以及100毫摩尔/升的醋酸铵或碳酸氢铵水溶液,研究了蛋白质物理性质对离子信号的作用。正负离子都会发生蛋白质离子脱盐。使用269纳米尖端时,蛋白质混合物的信号随时间变化,每种蛋白质离子被观测到的顺序与预期的蛋白质-表面相互作用强度有关。这些结果表明,不仅高表面积与体积之比在蛋白质吸附以及初始离子信号的降低或缺失中起作用,而且较小发射器的小扩散距离和极低流速会导致一些蛋白质完全吸附并失去信号,直到吸附位点被填满且zeta电位显著降低。大约30分钟后,来自两种不同尺寸毛细管的蛋白质混合物的信号相似。这些结果显示了亚微米发射器的优势,但也表明在使用这种小尖端的实验中必须考虑表面效应,或者应该考虑对发射器表面进行涂层以防止吸附。图形摘要。