Andrianova Anastasia A, DiProspero Thomas, Geib Clayton, Smoliakova Irina P, Kozliak Evguenii I, Kubátová Alena
Department of Chemistry, University of North Dakota, 151 Cornell St., Stop 9024, Grand Forks, ND, 58202, USA.
Agilent Technologies, 2850 Centerville Rd., Wilmington, DE, 19808, USA.
J Am Soc Mass Spectrom. 2018 May;29(5):1044-1059. doi: 10.1007/s13361-018-1916-z. Epub 2018 Mar 12.
The capability to characterize lignin, lignocellulose, and their degradation products is essential for the development of new renewable feedstocks. Electrospray ionization high-resolution time-of-flight mass spectrometry (ESI-HR TOF-MS) method was developed expanding the lignomics toolkit while targeting the simultaneous detection of low and high molecular weight (MW) lignin species. The effect of a broad range of electrolytes and various ionization conditions on ion formation and ionization effectiveness was studied using a suite of mono-, di-, and triarene lignin model compounds as well as kraft alkali lignin. Contrary to the previous studies, the positive ionization mode was found to be more effective for methoxy-substituted arenes and polyphenols, i.e., species of a broadly varied MW structurally similar to the native lignin. For the first time, we report an effective formation of multiply charged species of lignin with the subsequent mass spectrum deconvolution in the presence of 100 mmol L formic acid in the positive ESI mode. The developed method enabled the detection of lignin species with an MW between 150 and 9000 Da or higher, depending on the mass analyzer. The obtained M and M values of 1500 and 2500 Da, respectively, were in good agreement with those determined by gel permeation chromatography. Furthermore, the deconvoluted ESI mass spectrum was similar to that obtained with matrix-assisted laser desorption/ionization (MALDI)-HR TOF-MS, yet featuring a higher signal-to-noise ratio. The formation of multiply charged species was confirmed with ion mobility ESI-HR Q-TOF-MS. Graphical Abstract ᅟ.
表征木质素、木质纤维素及其降解产物的能力对于新型可再生原料的开发至关重要。开发了电喷雾电离高分辨率飞行时间质谱(ESI-HR TOF-MS)方法,扩展了木质素组学工具包,同时旨在同时检测低分子量和高分子量(MW)木质素物种。使用一系列单芳烃、二芳烃和三芳烃木质素模型化合物以及硫酸盐木质素,研究了广泛的电解质和各种电离条件对离子形成和电离效率的影响。与先前的研究相反,发现正电离模式对甲氧基取代的芳烃和多酚更有效,即结构上与天然木质素相似、分子量广泛变化的物种。首次报道了在正ESI模式下,在存在100 mmol/L甲酸的情况下,有效形成木质素的多电荷物种并随后进行质谱去卷积。所开发的方法能够检测分子量在150至9000 Da或更高之间的木质素物种,具体取决于质量分析器。分别获得的1500和2500 Da的M和M值与凝胶渗透色谱法测定的值非常吻合。此外,去卷积的ESI质谱与基质辅助激光解吸/电离(MALDI)-HR TOF-MS获得的质谱相似,但具有更高的信噪比。通过离子淌度ESI-HR Q-TOF-MS证实了多电荷物种的形成。图形摘要ᅟ。