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通过波长可调红外多光子解离质谱法区分异构体:应用于含葡萄糖的二糖

Differentiation of isomers by wavelength-tunable infrared multiple-photon dissociation-mass spectrometry: application to glucose-containing disaccharides.

作者信息

Polfer Nick C, Valle Jose J, Moore David T, Oomens Jos, Eyler John R, Bendiak Brad

机构信息

FOM Institute for Plasma Physics, Rijnhuizen, Molecular Dynamics Group, MN Nieuwegein, The Netherlands.

出版信息

Anal Chem. 2006 Feb 1;78(3):670-9. doi: 10.1021/ac0519458.

DOI:10.1021/ac0519458
PMID:16448038
Abstract

Variation in the wavelength of irradiation in infrared multiple-photon dissociation (IR-MPD) of lithium-tagged glucose-containing disaccharide ions (1-2-, 1-3-, 1-4-, and 1-6-linked isomers of both anomeric configurations) resulted in marked differences in their mass spectral fragmentation patterns. Two-dimensional plots of the fragment yield versus infrared wavelength for each mass spectral product ion were unique for each isomer and can be considered a spectral fingerprint. Individual product ions or diagnostic ratios of key product ions can be optimized at specific IR wavelengths. The technique permits both linkage position and anomeric configuration to be assigned. The ratio of the fragments derived by cleavage at the glycosidic bond (m/z 169/187) is much enhanced for beta-anomers compared to alpha-anomers. Differences in the diagnostic product ions 169 and 187 were largest in the range of 9.0-9.4 microm, where the maximum dissociation yield was observed. Conversely, at 10.6 microm, the wavelength of nontunable CO2 lasers that accompany commercial Fourier transform ion cyclotron resonance mass spectrometers, the dissociation yield was poor and anomeric differentiation was not possible. In contrast to previous studies by collision-induced dissociation, the trends in dissociation behavior between anomers using IR-MPD are significant and allow simple diagnostic rules to be established. By depositing energy into these isobaric ions via narrow-band IR excitation, the resulting internal energy can be finely controlled, thereby obtaining high reproducibility in dissociation patterns. Given the multidimensionality of variable-wavelength IR-MPD of lithiated disaccharides, it is expected that this approach can overcome some of the current limitations in isomer differentiation.

摘要

锂标记的含葡萄糖二糖离子(两种异头构型的1-2-、1-3-、1-4-和1-6-连接异构体)的红外多光子解离(IR-MPD)中辐照波长的变化导致其质谱碎裂模式存在显著差异。每个质谱产物离子的碎片产率与红外波长的二维图对于每种异构体都是独特的,可被视为光谱指纹。单个产物离子或关键产物离子的诊断比率可在特定红外波长下进行优化。该技术能够确定连接位置和异头构型。与α-异头物相比,β-异头物在糖苷键处裂解产生的碎片比率(m/z 169/187)显著提高。诊断产物离子169和187的差异在9.0 - 9.4微米范围内最大,在此范围内观察到最大解离产率。相反,在10.6微米(商用傅里叶变换离子回旋共振质谱仪所配备的不可调谐二氧化碳激光器的波长)处,解离产率很低,无法进行异头物区分。与之前通过碰撞诱导解离的研究不同,使用IR-MPD时异头物之间的解离行为趋势很显著,能够建立简单的诊断规则。通过窄带红外激发将能量沉积到这些等压离子中,可以精细控制产生的内能,从而在解离模式中获得高重现性。鉴于锂化二糖的可变波长IR-MPD具有多维性,预计这种方法能够克服当前异构体区分中的一些局限性。

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