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在与二价过渡金属阳离子络合的三种九肽的串联共振红外光解离(SORI-CID)中观察到二硫键断裂。

Disulfide bond cleavages observed in SORI-CID of three nonapeptides complexed with divalent transition-metal cations.

作者信息

Mihalca Romulus, van der Burgt Yuri E M, Heck Albert J R, Heeren Ron M A

机构信息

FOM Institute for Atomic and Molecular Physics (AMOLF), Kruislaan 407, 1098 SJ Amsterdam, The Netherlands.

出版信息

J Mass Spectrom. 2007 Apr;42(4):450-8. doi: 10.1002/jms.1175.

Abstract

Tandem MS sequencing of peptides that contain a disulfide bond is often hampered when using a slow heating technique. We show that complexation of a transition-metal ion with a disulfide-bridge-containing nonapeptide yields very rich tandem mass spectra, including fragments that involve the cleavage of the disulfide bond up to 56% of the total product ion intensity. On the contrary, MS/MS of the corresponding protonated nonapeptides results predominantly in fragments from the region that is not involved in the disulfide bond. Eleven different combinations of three nonapeptides and three metal ions were measured using Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) combined with sustained off-resonance irradiation collision induced dissociation (SORI-CID). All observed fragments are discussed with respect to four different types of product ions: neutral losses, b/y-fragmentation with and without the disulfide bond cleavage, and losses of internal amino acids without rupture of the disulfide bridge. Furthermore, it is shown that the observed complementary fragment pairs obtained from peptide-metal complexes can be used to determine the region of the binding site of the metal ion. This approach offers an efficient way to cleave disulfide-bridged structures using low energy MS/MS, which leads to increased sequence coverage and more confidence in peptide or protein assignments.

摘要

当使用缓慢加热技术时,含有二硫键的肽段的串联质谱测序常常受到阻碍。我们表明,过渡金属离子与含二硫键的九肽络合会产生非常丰富的串联质谱,包括涉及二硫键断裂的碎片,其强度占总产物离子强度的56%。相反,相应质子化九肽的串联质谱主要产生来自不涉及二硫键区域的碎片。使用傅里叶变换离子回旋共振质谱(FTICR-MS)结合持续非共振辐照碰撞诱导解离(SORI-CID)测量了三种九肽和三种金属离子的十一种不同组合。针对四种不同类型的产物离子讨论了所有观察到的碎片:中性丢失、有或无二硫键断裂的b/y碎片化以及无二硫键断裂的内部氨基酸丢失。此外,结果表明,从肽-金属络合物获得的观察到的互补碎片对可用于确定金属离子结合位点的区域。这种方法提供了一种使用低能量串联质谱裂解二硫键桥结构的有效方法,这导致序列覆盖率提高以及对肽或蛋白质归属更有信心。

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