Department of Chemistry and Biochemistry, University of Missouri St. Louis, St. Louis, MO, 63121, USA.
Laboratoire de Chimie Physique (UMR8000), CNRS, Univ. Paris-Sud, Université Paris-Saclay, 91405, Orsay, France.
J Am Soc Mass Spectrom. 2018 Dec;29(12):2380-2393. doi: 10.1007/s13361-018-2065-0. Epub 2018 Oct 3.
We investigate the tandem mass spectrometry of regiospecifically labeled, deprotonated sucrose analytes. We utilize density functional theory calculations to model the pertinent gas-phase fragmentation chemistry of the prevalent glycosidic bond cleavages (B-Y and C-Z reactions) and compare these predictions to infrared spectroscopy experiments on the resulting B and C product anions. For the C anions, barriers to interconversion of the pyranose [α-glucose-H], C anions to entropically favorable ring-open aldehyde-terminated forms were modest (41 kJ mol) consistent with the observation of a band assigned to a carbonyl stretch at ~ 1680-1720 cm. For the B anions, our transition structure calculations predict the presence of both deprotonated 1,6-anhydroglucose and carbon 2-ketone ((4S,5S,6R)-4,5-dihydroxy-6-(hydroxymethyl)dihydro-2H-pyran-3(4H)-one) anion structures, with the latter predominating. This hypothesis is supported by our spectroscopic data which show diagnostic bands at 1600, 1674, and 1699 cm (deprotonated carbon 2-ketone structures), and at ~ 1541 cm (both types of structure) and RRKM rate calculations. The deprotonated carbon 2-ketone structures are also the lowest energy product B anions. Graphical Abstract ᅟ.
我们研究了经区域选择性标记、去质子化的蔗糖分析物的串联质谱。我们利用密度泛函理论计算来模拟相关的气相断裂化学,包括常见的糖苷键断裂(B-Y 和 C-Z 反应),并将这些预测与对生成的 B 和 C 产物阴离子的红外光谱实验进行比较。对于 C 阴离子,吡喃糖 [α-葡萄糖-H]、C 阴离子之间的互变异构和有利于熵的开环醛端形式的转化壁垒适中(41 kJ mol),这与在1680-1720 cm 处分配给羰基伸展的谱带的观察结果一致。对于 B 阴离子,我们的过渡态结构计算预测存在两种去质子化的 1,6-脱水葡萄糖和碳 2-酮((4S,5S,6R)-4,5-二羟基-6-(羟甲基)二氢-2H-吡喃-3(4H)-酮)阴离子结构,后者占主导地位。这一假设得到了我们的光谱数据的支持,这些数据显示出在 1600、1674 和 1699 cm 处(去质子化的碳 2-酮结构)以及在1541 cm 处(两种结构类型)存在特征谱带,以及 RRKM 速率计算。去质子化的碳 2-酮结构也是最低能量的 B 阴离子产物。