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基质辅助激光解吸电离(MALDI)产生的质子化肽在266nm光解离中的发色团效应。

Chromophore effect in photodissociation at 266 nm of protonated peptides generated by matrix-assisted laser desorption ionization (MALDI).

作者信息

Oh Joo Yeon, Moon Jeong Hee, Kim Myung Soo

机构信息

National Creative Research Initiative Center for Control of Reaction Dynamics and School of Chemistry, Seoul National University, Seoul 151-742, Korea.

出版信息

J Mass Spectrom. 2005 Jul;40(7):899-907. doi: 10.1002/jms.866.

Abstract

Chromophore effect in the photodissociation of protonated peptides at 266 nm was investigated using synthetic peptides with the sequence RGGXGGGGGR where X was a phenylalanyl(F), tyrosyl(Y), cysteinyl(C), glycyl(G), seryl(S), or histidyl(H) residue. The peptides with an F or Y residue dissociated efficiently. Fragment ions due to cleavages at either end of the chromophore were especially prominent just as for the peptide with a tryptophanyl residue reported previously.1Photodissociation was observed even for the peptides without any noticeable chromophore at 266 nm. Here, dissociation at all the peptide bonds was almost equally prominent. Photodissociation of the protonated angiotensin I was investigated using the spectral correlation rules observed in the model systems. Role of the chromophores and the plausible mechanisms involved are discussed.

摘要

使用序列为RGGXGGGGGR的合成肽研究了266nm下质子化肽光解离中的发色团效应,其中X为苯丙氨酰基(F)、酪氨酰基(Y)、半胱氨酰基(C)、甘氨酰基(G)、丝氨酰基(S)或组氨酰基(H)残基。含有F或Y残基的肽能有效解离。正如之前报道的含有色氨酰基残基的肽一样,发色团两端断裂产生的碎片离子尤为突出。即使对于在266nm处没有任何明显发色团的肽也观察到了光解离。在此,所有肽键处的解离几乎同样显著。利用在模型系统中观察到的光谱相关规则研究了质子化血管紧张素I的光解离。讨论了发色团的作用和可能涉及的机制。

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