Ramesh Babu A, Raju G, Purna Chander C, Shoban Babu B, Srinivas R, Sharma G V M
National Centre for Mass Spectrometry, CSIR-Indian Institute of Chemical Technology, Hyderabad 500007, India.
Organic and Biomolecular Chemistry Division, CSIR-Indian Institute of Chemical Technology, Hyderabad 500 007, India.
Eur J Mass Spectrom (Chichester). 2016;22(4):181-191. doi: 10.1255/ejms.1431.
A new class of Boc-N-protected hybrid peptides derived from L- Ala and ε-Caa (L-Ala = L-Alanine, Caa = C-linked carboamino acid derived from D-xylose) have been studied by positive ion electrospray ionization (ESI) ion-trap tandem mass spectrometry (MS/MS). MS spectra of protonated and alkali-cationized hybrid peptides produce characteristic fragmentation involving the peptide backbone, the tert-butyloxycarbonyl (Boc) group, and the side chain. The dipeptide positional isomers are differentiated by the collision-induced dissociation (CID) of the protonated and alkali-cationized peptides. The CID of [M + H] ion of Boc-NH-L-Ala-ε-Caa- OCH (1) shows a prominent [M + H - CH] ion, which is totally absent for its positional isomer Boc-NH-ε-Caa-L-Ala-OCH (6), which instead shows significant loss of t-butanol. The formation of the [M + Cat - CH] ion is totally absent and [M + Cat - Boc + H] is prominent in the CID of the [M + Cat] ion of Boc-NH-L-Ala-ε-Caa- OCH (1), whereas the former is highly abundant and the latter is of low abundance for its positional isomer Boc-NH-ε-Caa-L-Ala-OCH (6). It is observed that 'b' ions are abundant when oxazolone structures are formed through a five-membered cyclic transition state in tetra-, penta-, and hexapeptides and the cyclization process for larger 'b' ions led to an insignificant abundance. However, the significant 'b' ion is formed in ε,α-dipeptide, which may have a seven-membered substituted 2-oxoazepanium ion structure. The MS spectra of [M + Cat - Boc + H] ions of these peptides are found to be significantly different to those of [M + H - Boc + H] ions. The CID spectra of [M + Cat - Boc + H] ions of peptide acids containing L-Ala at the C-terminus show an abundant N-terminal rearrangement ion, [b + 17 + Cat], which is absent for the peptide acids containing ε-Caa at the C-terminus. Thus, the results of these hybrid peptides provide sequencing information, the structure of the cyclic intermediate involved in the formation of the rearrangement ion, and distinguish a pair of dipeptide positional isomers.
通过正离子电喷雾电离(ESI)离子阱串联质谱(MS/MS)研究了一类新型的由L-丙氨酸和ε-Caa(L-Ala = L-丙氨酸,Caa = 源自D-木糖的C-连接碳氨基氨基酸)衍生的Boc-N-保护杂合肽。质子化和碱金属阳离子化杂合肽的质谱产生涉及肽主链、叔丁氧羰基(Boc)基团和侧链的特征性碎片化。通过质子化和碱金属阳离子化肽的碰撞诱导解离(CID)来区分二肽位置异构体。Boc-NH-L-Ala-ε-Caa-OCH(1)的[M + H]离子的CID显示出一个突出的[M + H - CH₃]离子,而其位置异构体Boc-NH-ε-Caa-L-Ala-OCH(6)则完全没有该离子,相反,它显示出显著的叔丁醇损失。在Boc-NH-L-Ala-ε-Caa-OCH(1)的[M + Cat]离子的CID中,完全没有[M + Cat - CH₃]离子的形成,而[M + Cat - Boc + H]离子很突出,而对于其位置异构体Boc-NH-ε-Caa-L-Ala-OCH(6),前者丰度很高,后者丰度很低。观察到,当四肽、五肽和六肽通过五元环状过渡态形成恶唑酮结构时,“b”离子很丰富,而对于更大的“b”离子的环化过程导致丰度不显著。然而,在ε,α-二肽中形成了显著的“b”离子,其可能具有七元取代的2-氧代氮杂䓬离子结构。发现这些肽的[M + Cat - Boc + H]离子的质谱与[M + H - Boc + H]离子的质谱有显著差异。在C端含有L-丙氨酸的肽酸的[M + Cat - Boc + H]离子的CID谱显示出丰富的N端重排离子[b + 17 + Cat],而在C端含有ε-Caa的肽酸中则不存在该离子。因此,这些杂合肽的结果提供了测序信息、参与重排离子形成的环状中间体的结构,并区分了一对二肽位置异构体。