Schnier P D, Jurchen J C, Williams E R
Department of Chemistry, University of California, Berkeley, California, 94720.
J Phys Chem B. 1999 Jan 28;103(4):737-45. doi: 10.1021/jp9833193.
A method for determining the internal energy of biomolecule ions activated by collisions is demonstrated. The dissociation kinetics of protonated leucine enkephalin and doubly protonated bradykinin were measured using sustained off-resonance irradiation (SORI) collisionally activated dissociation (CAD) in a Fourier transform mass spectrometer. Dissociation rate constants are obtained from these kinetic data. In combination with Arrhenius parameters measured with blackbody infrared radiative dissociation, the "effective" temperatures of these ions are obtained. Effects of excitation voltage and frequency and the ion cell pressure were investigated. With typical SORI-CAD experimental conditions, the effective temperatures of these peptide ions range between 200 and 400 degrees C. Higher temperatures can be easily obtained for ions that require more internal energy to dissociate. The effective temperatures of both protonated leucine enkephalin and doubly protonated bradykinin measured with the same experimental conditions are similar. Effective temperatures for protonated leucine enkephalin can also be obtained from the branching ratio of the b(4) and (M + H - H(2)O)(+) pathways. Values obtained from this method are in good agreement with those obtained from the overall dissociation rate constants. Protonated leucine enkephalin is an excellent "thermometer" ion and should be well suited to establishing effective temperatures of ions activated by other dissociation techniques, such as infrared photodissociation, as well as ionization methods, such as matrix assisted laser desorption/ionization.
本文展示了一种测定碰撞激活的生物分子离子内能的方法。在傅里叶变换质谱仪中,使用持续非共振辐照(SORI)碰撞激活解离(CAD)技术测量了质子化亮氨酸脑啡肽和双质子化缓激肽的解离动力学。从这些动力学数据中获得了解离速率常数。结合通过黑体红外辐射解离测量的阿伦尼乌斯参数,得到了这些离子的“有效”温度。研究了激发电压、频率和离子池压力的影响。在典型的SORI-CAD实验条件下,这些肽离子的有效温度在200至400摄氏度之间。对于需要更多内能才能解离的离子,可以很容易地获得更高的温度。在相同实验条件下测量的质子化亮氨酸脑啡肽和双质子化缓激肽的有效温度相似。质子化亮氨酸脑啡肽的有效温度也可以从b(4)和(M + H - H(2)O)(+)途径的分支比中获得。通过这种方法获得的值与从整体解离速率常数中获得的值非常一致。质子化亮氨酸脑啡肽是一种出色的“温度计”离子,非常适合用于确定通过其他解离技术(如红外光解离)以及电离方法(如基质辅助激光解吸/电离)激活的离子的有效温度。