Chemical Methods and Separations Group, Chemical Sciences Department, Battelle, Pacific Northwest Laboratory, Box 999, P8-19, 99352, Richland, WA.
J Am Soc Mass Spectrom. 1994 Jul;5(7):614-22. doi: 10.1016/1044-0305(94)85002-X.
The thermal stability of ribonuclease S (RNase S), an enzymatically active noncovalent complex composed of a 2166-u peptide (S-peptide) and a 11,534-u protein (S-protein), was investigated by electrospray ionization mass spectrometry (ESI-MS) and capillary electrophoresis ESI-MS (CE-ESI-MS). The intensities of peaks corresponding to the RNase S complex were inversely related to both the applied nozzle-skimmer (or capillary-skimmer) voltage bias in the atmosphere-vacuum interface and the temperature of the RNase S solution. By using a heated metal capillary-skimmer interface and a room temperature solution of RNase S, the intensities of RNase S molecular ion peaks were observed to decrease with increasing metal capillary temperature. Mass spectrometric studies with both the nozzle-skimmer and capillary-skimmer interface designs allowed determination of phenomenological enthalpies for dissociation of the RNase S complex in both solution and for the electrosprayed microdroplet-gas phase species. Intact RNase S complex could also be detected with CE-ESI-MS separations by using a 10-mM ammonium bicarbonate (pH 7.9) solution as the electrophoretic buffer. These studies provide new insights into the stability of multiply charged noncovalent complexes in the gas phase and the mass spectrometric conditions required for such studies, and suggest that information regarding solution properties can be obtained by ESI-MS.
通过电喷雾电离质谱(ESI-MS)和毛细管电泳 ESI-MS(CE-ESI-MS)研究了核糖核酸酶 S(RNase S)的热稳定性,RNase S 是由一个 2166-u 肽(S-肽)和一个 11534-u 蛋白(S-蛋白)组成的酶活性非共价复合物。RNase S 复合物的峰强度与大气-真空界面中施加的喷嘴-取样器(或毛细管-取样器)电压偏置以及 RNase S 溶液的温度呈反比。通过使用加热的金属毛细管取样器界面和 RNase S 的室温溶液,观察到 RNase S 分子离子峰的强度随着金属毛细管温度的升高而降低。使用喷嘴-取样器和毛细管-取样器界面设计的质谱研究允许确定 RNase S 复合物在溶液中和电喷雾微滴-气相物种中解离的现象焓。通过使用 10-mM 碳酸氢铵(pH 7.9)作为电泳缓冲液,CE-ESI-MS 分离也可以检测到完整的 RNase S 复合物。这些研究为气相中多电荷非共价复合物的稳定性以及此类研究所需的质谱条件提供了新的见解,并表明可以通过 ESI-MS 获得有关溶液性质的信息。