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Ultraviolet Photodissociation at 355 nm of Fluorescently Labeled Oligosaccharides

机译:355 nm荧光标记寡糖的紫外光解离

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Ultraviolet photodissociation (UVPD) produces complementary fragmentation to collision-induced dissociation (CID) when implemented for activation of fluorescently labeled oligosaccharide and glycan ions. Reductive amination of oligosaccharides with fluorophore reagents results in efficient photon absorption at 355 nm, producing fragment ions from the nonreducing end that do not contain the appended fluorophore. In contrast to the fragment ions observed upon UVPD (A- and C-type ions), CID produces mainly reducing end fragments retaining the fluorophore (Y-type ions). UVPD affords better isomeric differentiation of both the lacto-N-fucopentaoses series and the lacto-N-difucohexaoses series, but in general, the combination of UVPD and CID offers the most diagnostic elucidation of complex branched oligosaccharides. Four fluorophores yielded similar MS/MS results; however, 6-aminoquinoline (6-AQ), 2-amino-9(10H)-acridone (AMAC) and 7-aminomethylcoumarin (AMC) afforded more efficient photon absorption and subsequent dissociation than 2-aminobenzamide (2-AB). UVPD also was useful for characterization of glycans released from ribonuclease B and derivatized with 6-AQ. Lastly, electron photodetachment dissociation of oligosaccharides derivatized with 7-amino-1,3-naphthalenedisulfonic acid (AGA) yielded unique cross-ring cleavages similar to those obtained by electron detachment dissociation.
机译:紫外线光解离(UVPD)在实现荧光标记的寡糖和聚糖离子的活化作用时,会产生与碰撞诱导解离(CID)互补的片段。用荧光团试剂对寡糖进行还原性胺化,可在355 nm处有效吸收光子,从而从非还原端产生不包含所附荧光团的碎片离子。与UVPD观察到的碎片离子(A型和C型离子)相反,CID主要产生保留荧光团的还原性末端碎片(Y型离子)。 UVPD可以提供乳酸-N-岩藻多糖糖系列和乳酸-N-二岩藻糖糖系列的更好的异构体区分,但总的来说,UVPD和CID的组合可对复杂的支链低聚糖提供最具诊断性的阐明。四种荧光团产生了相似的MS / MS结果。然而,与2-氨基苯甲酰胺(2-AB)相比,6-氨基喹啉(6-AQ),2-氨基-9(10H)-rid啶酮(AMAC)和7-氨基甲基香豆素(AMC)提供更有效的光子吸收和随后的离解。 UVPD还可用于表征从核糖核酸酶B释放并被6-AQ衍生的聚糖。最后,用7-氨基-1,3-萘二磺酸(AGA)衍生的寡糖的电子光解离解产生了独特的交叉环裂解,类似于通过电子离解解离获得的。

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