Andreazza Hayley J, Fitzgerald Mark, Bilusich Daniel, Hoffmann Ralf, Hoffmann Peter, Eichinger Peter C H, Bowie John H
Department of Chemistry, The University of Adelaide, South Australia, 5005.
Rapid Commun Mass Spectrom. 2008 Oct;22(20):3305-12. doi: 10.1002/rcm.3736.
Peptides and proteins may contain post-translationally modified phosphorylated amino acid residues, in particular phosphorylated serine (pSer), threonine (pThr) and tyrosine (pTyr). Following earlier work by Lehmann et al., the [M-H]- anions of peptides containing pSer and pThr functionality show loss of the elements of H3PO4. This process, illustrated for Ser (and using a model system), is CH3CONH-C(CH2OPO3H2)CONHCH(3) --> [CH3CONHC(==CH2)CONHCH3 (-OPO3H2)] (a) --> [CH3CONHC(==CH2)CONHCH3-H]- + H3PO4, a process endothermic by 83 kJ mol(-1) at the MP2/6-31++G(d,p)//HF/6-31++G(d,p) level of theory. In addition, intermediate (a) may decompose to yield CH3CONHC(==CH2)CONHCH3 + H2PO4 - in a process exothermic by 3 kJ mol(-1). The barrier to the transition state for these two processes is 49 kJ mol(-1). Characteristic cleavages of pSer and pThr are more energetically favourable than the negative ion backbone cleavages of peptides described previously. In contrast, loss of HPO3 from [M-H]- is characteristic of pTyr. The cleavage [NH2CH(CH2-C6H4-OPO3H-)CO2H] --> [NH2C(CH2-C6H4-O-)CO2H (HPO3)] (b) --> NH2CH(CH2-C6H4-O-)CO2H + HPO3 is endothermic by 318 kJ mol(-1) at the HF/6-31+G(d)//AM1 level of theory. In addition, intermediate (b) also yields NH2CH(CH2-C6H4-OH)CO2H + PO3 - (reaction endothermic by 137 kJ mol(-1)). The two negative ion cleavages of pTyr have a barrier to the transition state of 198 kJ mol(-1) (at the HF/6-31+G(d)//AM1 level of theory) comparable with those already reported for negative ion backbone cleavages.
肽和蛋白质可能含有翻译后修饰的磷酸化氨基酸残基,特别是磷酸化的丝氨酸(pSer)、苏氨酸(pThr)和酪氨酸(pTyr)。继 Lehmann 等人早期的工作之后,含有 pSer 和 pThr 官能团的肽的[M-H]-阴离子显示出 H3PO4 元素的损失。这个过程(以 Ser 为例并使用一个模型体系说明)为:CH3CONH-C(CH2OPO3H2)CONHCH(3) --> [CH3CONHC(==CH2)CONHCH3 (-OPO3H2)] (a) --> [CH3CONHC(==CH2)CONHCH3-H]- + H3PO4,在 MP2/6-31++G(d,p)//HF/6-31++G(d,p)理论水平下,该过程吸热 83 kJ/mol。此外,中间体(a)可能分解生成 CH3CONHC(==CH2)CONHCH3 + H2PO4 -,此过程放热 3 kJ/mol。这两个过程过渡态的能垒为 49 kJ/mol。pSer 和 pThr 的特征裂解比先前描述的肽的负离子主链裂解在能量上更有利。相比之下,[M-H]-中 HPO3 的损失是 pTyr 的特征。在 HF/6-31+G(d)//AM1 理论水平下,裂解[NH2CH(CH2-C6H4-OPO3H-)CO2H] --> [NH2C(CH2-C6H4-O-)CO2H (HPO3)] (b) --> NH2CH(CH2-C6H4-O-)CO2H + HPO3 吸热 318 kJ/mol。此外,中间体(b)还生成 NH2CH(CH2-C6H4-OH)CO2H + PO3 -(反应吸热 137 kJ/mol)。pTyr 的两种负离子裂解的过渡态能垒为 198 kJ/mol(在 HF/6-31+G(d)//AM1 理论水平下),与先前报道的负离子主链裂解的能垒相当。