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使用快原子轰击离子源和磁质谱仪的基质辅助激光解吸。

Matrix-assisted laser desorption using a fast-atom bombardment ion source and a magnetic mass spectrometer.

作者信息

Annan R S, Köchling H J, Hill J A, Biemann K

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Rapid Commun Mass Spectrom. 1992 Apr;6(4):298-302. doi: 10.1002/rcm.1290060415.

Abstract

A conventional fast-atom bombardment (FAB) ion source was used to achieve matrix-assisted laser desorption (MALD) in a high-mass, double-focusing, magnetic mass spectrometer. The pulsed ion signals generated by irradiation of a mixture of sample and matrix (2,5-dihydroxybenzoic acid) with either a XeF excimer laser (353 nm) or a nitrogen laser (337 nm) were recorded with a focal-plane detector. A resolution (full-width at half maximum) of 4500 was achieved at m/z 1347.7 (the peptide substance P), 2500 for CsI cluster ions at m/z 10,005.7, and 1250 for the isotope cluster of the small protein cytochrome c (horse) [M+H]+ = m/z 12,360 (average). Sensitivity is demonstrated with 11 fmol of substance P. A survey scan is taken to locate the m/z of the sample molecular ion. The segment that contains the sample can then be integrated for a longer time to produce a better signal-to-noise ratio. In addition to higher sensitivity and lower matrix interference, the advantage of MALD over FAB is the former's lower susceptibility to the presence of salts, and competition between hydrophobic and hydrophilic components of a mixture. This feature is demonstrated by the complete MALD spectrum of a crude partial tryptic digest of sperm-whale apomyoglobin, containing 24 peptides, representing the entire sequence of this protein.

摘要

在一台高质量双聚焦磁质谱仪中,使用传统的快原子轰击(FAB)离子源实现了基质辅助激光解吸(MALD)。用XeF准分子激光(353 nm)或氮激光(337 nm)照射样品与基质(2,5 - 二羟基苯甲酸)的混合物所产生的脉冲离子信号,由焦平面探测器记录。在m/z 1347.7(肽物质P)处实现了4500的分辨率(半高宽),在m/z 10,005.7处对于CsI簇离子分辨率为2500,对于小蛋白质细胞色素c(马)的同位素簇[M + H]+ = m/z 12,360(平均)分辨率为1250。用11 fmol的物质P展示了灵敏度。进行一次全扫描以定位样品分子离子的m/z。然后可以对包含样品的片段进行更长时间积分以产生更好的信噪比。除了更高的灵敏度和更低的基质干扰外,MALD相对于FAB的优势在于前者对盐的存在、混合物中疏水和亲水成分之间的竞争的敏感性较低。抹香鲸脱辅基肌红蛋白的粗胰蛋白酶部分消化产物(包含24个肽段,代表该蛋白质的完整序列)的完整MALD谱图证明了这一特性。

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