Department of Chemistry and The Key Laboratory for Chemical Biology of Fujian Province, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, PR China.
Rapid Commun Mass Spectrom. 2011 Oct 30;25(20):3151-60. doi: 10.1002/rcm.5210.
The fragmentation pathways of both protonated and sodiated pentacoordinate spirobicyclic aminoacylphosphoranes (P-AAs) have been studied by electrospray ionization multi-stage mass spectrometry (ESI-MS(n)) in positive mode. The possible pathways and their mechanisms are elucidated through the combination of ESI-MS/MS, isotope ((15)N and (2)H) labeling and high-resolution Fourier transform ion cyclotron resonance (FTICR)-MS/MS. The relative Gibbs free energies (ΔG) of the product ions and possible fragmentation pathways are estimated at the B3LYP/6-31 G(d) level of theory. The theoretical calculations show that both protonated and sodiated P-AAs would quickly fragment before Berry pseudorotation. For protonated P-AAs, they have different tendencies to P-O or P-N bond cleavage. For sodiated P-AAs, the P-N bond is easier to cleave and produces the tetracoordinated phosphorus ion H. These results to some extent may give a clue to the chemistry of the active sites of phosphoryl transfer enzymes and will enrich the gas-phase ESI-MS ion chemistry of pentacoordinate phosphoranes.
通过电喷雾电离多级质谱(ESI-MS(n))在正模式下研究了质子化和钠离子化的五配位螺环氨基酸膦(P-AA)的碎片化途径。通过 ESI-MS/MS、同位素((15)N 和 (2)H)标记和高分辨率傅里叶变换离子回旋共振(FTICR)-MS/MS 的结合,阐明了可能的途径和机制。通过 B3LYP/6-31G(d)理论水平估算了产物离子的相对吉布斯自由能(ΔG)和可能的碎片化途径。理论计算表明,质子化和钠离子化的 P-AA 在 Berry 假旋转之前都会迅速断裂。对于质子化的 P-AA,它们具有不同的倾向于 P-O 或 P-N 键断裂。对于钠离子化的 P-AA,P-N 键更容易断裂,并产生四配位磷离子 H。这些结果在某种程度上可能为磷酸转移酶活性位点的化学提供线索,并丰富五配位磷烷的气相 ESI-MS 离子化学。