Department of Chemistry and Center for Advanced Photonics Research, Temple University, Philadelphia, PA, 19122, USA.
J Am Soc Mass Spectrom. 2018 May;29(5):1002-1011. doi: 10.1007/s13361-018-1893-2. Epub 2018 Mar 8.
The detection of lysozyme, or a mixture of lysozyme, cytochrome c, and myoglobin, from solutions with varying salt concentrations (0.1 to 250 mM NaCl) is compared using laser electrospray mass spectrometry (LEMS) and electrospray ionization-mass spectrometry (ESI-MS). Protonated protein peaks were observed up to a concentration of 250 mM NaCl in the case of LEMS. In the case of ESI-MS, a protein solution with salt concentration > 0.5 mM resulted in predominantly salt-adducted features, with suppression of the protonated protein ions. The constituents in the mixture of proteins were assignable up to 250 mM NaCl for LEMS and were not assignable above a NaCl concentration of 0.5 mM for ESI. The average sodium adducts (< n >) bound to the 7+ charge state of lysozyme for LEMS measurements from salt concentrations of 2.5, 25, 50, and 100 mM NaCl are 1.71, 5.23, 5.26, and 5.11, respectively. The conventional electrospray measurements for lysozyme solution containing salt concentrations of 0.1, 1, 2, and 5 mM NaCl resulted in < n > of 2.65, 6.44, 7.57, and 8.48, respectively. LEMS displays an approximately two orders of magnitude higher salt tolerance in comparison with conventional ESI-MS. The non-equilibrium partitioning of proteins on the surface of the charged droplets is proposed as the mechanism for the high salt tolerance phenomena observed in the LEMS measurements. Graphical Abstract ᅟ.
使用激光电喷雾质谱(LEMS)和电喷雾电离-质谱(ESI-MS)比较了不同盐浓度(0.1 至 250 mM NaCl)溶液中溶菌酶或溶菌酶、细胞色素 c 和肌红蛋白混合物的检测。在 LEMS 的情况下,观察到高达 250 mM NaCl 浓度的质子化蛋白质峰。对于 ESI-MS,盐浓度>0.5 mM 的蛋白质溶液主要导致盐加合物特征,质子化蛋白质离子受到抑制。在 LEMS 中,混合物中的蛋白质成分可分配至 250 mM NaCl,而在 ESI 中盐浓度高于 0.5 mM 时则无法分配。对于 LEMS 测量,从 2.5、25、50 和 100 mM NaCl 的盐浓度中,溶菌酶 7+电荷状态的平均钠加合物(