Fukuyama Yuko, Kolender Adriana A, Nishioka Masae, Nonami Hiroshi, Matulewicz María C, Erra-Balsells Rosa, Cerezo Alberto S
Plant Biophysics/Biochemistry Research Laboratory, College of Agriculture, Ehime University, 3-5-7 Tarumi, Matsuyama 790-8566, Japan.
Rapid Commun Mass Spectrom. 2005;19(3):349-58. doi: 10.1002/rcm.1783.
Three xylan fractions isolated from the red seaweed Nothogenia fastigiata (Nemaliales) were analyzed by ultraviolet matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (UV-MALDI-TOFMS). UV-MALDI-TOFMS was carried out in the linear and reflectron modes, and as routine in the positive and negative ion modes. Of the several matrices tested, nor-harmane was the only effective one giving good spectra in the positive ion mode. The number-average molar masses of two of the fractions, calculated from the distribution profiles, were lower than those determined previously by (1)H NMR analysis, suggesting a decrease in the ionization efficiency with increasing molecular weight; weight-average molar mass and polydispersity index were also determined. As the xylans retained small but significant quantities of calcium salts, the influence of added Ca(2+) as CaCl(2) on UV-MALDI-MS was investigated. The simultaneous addition of sodium chloride and calcium chloride was also analyzed. Addition of sodium chloride did not change the distribution profile of the native sample showing that the inhibitory effect is due to Ca(2+) and not to Cl(-). Addition of calcium chloride with 1:1 analyte/salt molar ratio gave spectra with less efficient desorption/ionization of oligomers; the signals of these oligomers were completely suppressed when the addition of the salt became massive (1:100 analyte/salt molar ratio).
对从红藻Nothogenia fastigiata(海膜目)中分离出的三种木聚糖级分进行了紫外基质辅助激光解吸/电离飞行时间质谱(UV-MALDI-TOFMS)分析。UV-MALDI-TOFMS在线性和反射模式下进行,并且按照常规在正离子和负离子模式下进行。在测试的几种基质中,去氢骆驼蓬碱是唯一在正离子模式下能给出良好光谱的有效基质。根据分布曲线计算的两个级分的数均摩尔质量低于先前通过¹H NMR分析测定的值,这表明随着分子量的增加电离效率降低;还测定了重均摩尔质量和多分散指数。由于木聚糖保留了少量但显著量的钙盐,因此研究了添加Ca²⁺(以CaCl₂形式)对UV-MALDI-MS的影响。还分析了同时添加氯化钠和氯化钙的情况。添加氯化钠不会改变天然样品的分布曲线,表明抑制作用是由于Ca²⁺而不是Cl⁻。以1:1的分析物/盐摩尔比添加氯化钙会使低聚物的解吸/电离效率降低;当大量添加盐(1:100分析物/盐摩尔比)时,这些低聚物的信号会被完全抑制。