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Hybrid Activation Methods for Elucidating Nucleic Acid Modifications

机译:阐明核酸修饰的混合激活方法

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Hybrid tandem mass spectrometry (MS/MS) techniques combining electron transfer (ET) and collision activated dissociation (CAD), infrared multiphoton dissociation (IRMPD), or ultraviolet photodissociation (UVPD) were implemented and evaluated for the characterization of a series of oligonucleotides and oligoribonucleotides, including both native single strands and single strands containing platinated, phosphorothioated, and 2'-O-methylated modification sites. ET-IRMPD and ET-UVPD of oligodeoxynucleotides and oligoribonucleotides resulted in rich fragmentation with respect to production of w, a, z, and d ions for DNA, and c, y, w, a-B, d, and z ions for RNA, with many product ions retaining the modification and thus allowing site specific identification. ET-IRMPD caused more extensive secondary dissociation of the ions, in addition to a broader distribution of detectable sequence ions attributed to using a lower mass cutoff. ET-UVPD promoted higher energy fragmentation pathways and created the most diverse MS/MS spectra. The numerous products generated by the hybrid MS/MS techniques resulted in specific and extensive backbone cleavages which allowed the modification sites of multiply modified oligonucleotides to be elucidated.
机译:结合电子转移(ET)和碰撞激活解离(CAD),红外多光子解离(IRMPD)或紫外光解离(UVPD)的混合串联质谱(MS / MS)技术已实现并评估了一系列寡核苷酸和寡核糖核苷酸,包括天然单链和含有镀铂,硫代磷酸和2'-O-甲基化修饰位点的单链。寡脱氧核苷酸和寡核糖核苷酸的ET-IRMPD和ET-UVPD导致了DNA的w,a,z和d离子以及RNA的c,y,w,aB,d和z离子产生方面的丰富片段化许多产物离子保留了修饰,因此可以进行特定位置的鉴定。 ET-IRMPD引起了离子的更广泛的二次解离,此外归因于使用较低的质量截止值,可检测序列离子的分布范围更广。 ET-UVPD促进了更高的能量裂解途径,并创建了最多样化的MS / MS光谱。杂种MS / MS技术产生的大量产物导致特异性和广泛的骨架裂解,从而阐明了多个修饰寡核苷酸的修饰位点。

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