在单气相实验中结合激光诱导版与碰撞诱导的数字低聚物测序。

IF 1.8 3区 化学 Q4 BIOCHEMICAL RESEARCH METHODS
Clothilde Comby-Zerbino, Jean-François Lutz, Luke MacAleese, Laurence Charles
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引用次数: 0

摘要

原理:为了提高分子标签的机密性,二元信息可以隐藏在序列定义的低聚物中,使用等压单体,包括光敏单体,其质量可以在光照射下修改。读取此类安全数据需要在MS/MS测序之前进行轻版,这是在单个气相工作流程中进行的研究。方法:以光敏邻基或光惰性对硝基苯侧基组成的低聚物(磷酸二酯)作为去质子化低聚物,在配备不同光源的离子阱仪器中进行取样。比较了纳秒脉冲激光(266或365 nm)和连续激光(375 nm)辐照对激光诱导解离中所有邻硝基苯基部分的光裂解效率,以及在碰撞诱导解离中产生足够数量的编辑低聚物以实现其序列的完全覆盖的效率。结果:虽然脉冲激光不能完全实现光敏部分的裂解,但连续波激光很容易实现所有邻硝基苯侧基的光裂解,这可以通过邻硝基苯甲醛从辐照链中连续损失来监测。最大限度地产生编辑寡聚物所需的时间随着它们的反应单元数量的增加而增加,但发现较短的辐照步骤足以产生足够的二级前体,从而在MS/MS中实现全序列覆盖。结论:激光诱导的光敏单元修饰可以将两个等压单体的单调序列转化为MS/MS可读序列。与低聚物版本在溶液中进行的1小时辐照相比,这种气相实验可以实现更高的通量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining Laser-Induced Edition to Collision-Induced Sequencing of Digital Oligomers in a Single Gas-Phase Experiment.

Rationale: To increase the confidentiality level of molecular tags, binary information can be hidden in sequence-defined oligomers using isobaric monomers including a photo-sensitive one, which mass can be modified upon light irradiation. Reading such secured data requires light edition prior to MS/MS sequencing, which was investigated here in a single gas-phase workflow.

Methods: Oligo (phosphodiester)s made of units with either light-sensitive ortho- or light-inert para-nitrobenzyl side-group were electrosprayed as deprotonated oligomers and sampled in an ion trap instrument equipped with various light sources. Nanosecond-pulsed laser (266 or 365 nm) and CW laser (375 nm) irradiations were compared for their efficiency to induce photo-cleavage of all o-nitrobenzyl moieties in laser-induced dissociation and to produce sufficient amounts of edited oligomers to achieve full coverage of their sequence in collision-induced dissociation.

Results: While cleavage of photo-sensitive moieties was never fully achieved with the pulsed laser, photo-cleavage of all o-nitrobenzyl side-groups readily occurred with the CW laser, as monitored by successive losses of o-nitrobenzaldehyde from the irradiated chains. Time required for maximal production of edited oligomers increased with their number of reactive units but shorter irradiation steps were found sufficient to produce enough secondary precursors to achieve full sequence coverage in MS/MS.

Conclusions: Laser-induced modification of light-sensitive units allowed monotonic sequences of two isobaric monomers to be turned into MS/MS readable sequences. This gas-phase experiment enables a much higher throughput compared with the 1-h irradiation requested for the oligomer edition when performed in solution.

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来源期刊
CiteScore
4.10
自引率
5.00%
发文量
219
审稿时长
2.6 months
期刊介绍: Rapid Communications in Mass Spectrometry is a journal whose aim is the rapid publication of original research results and ideas on all aspects of the science of gas-phase ions; it covers all the associated scientific disciplines. There is no formal limit on paper length ("rapid" is not synonymous with "brief"), but papers should be of a length that is commensurate with the importance and complexity of the results being reported. Contributions may be theoretical or practical in nature; they may deal with methods, techniques and applications, or with the interpretation of results; they may cover any area in science that depends directly on measurements made upon gaseous ions or that is associated with such measurements.
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