Literature DB >> 24043521

Gas-phase dissociation of homo-DNA oligonucleotides.

Silvan R Stucki1, Camille Désiron, Adrien Nyakas, Simon Marti, Christian J Leumann, Stefan Schürch.   

Abstract

Synthetic modified oligonucleotides are of interest for diagnostic and therapeutic applications, as their biological stability, pairing selectivity, and binding strength can be considerably increased by the incorporation of unnatural structural elements. Homo-DNA is an oligonucleotide homologue based on dideoxy-hexopyranosyl sugar moieties, which follows the Watson-Crick A-T and G-C base pairing system, but does not hybridize with complementary natural DNA and RNA. Homo-DNA has found application as a bioorthogonal element in templated chemistry applications. The gas-phase dissociation of homo-DNA has been investigated by ESI-MS/MS and MALDI-MS/MS, and mechanistic aspects of its gas-phase dissociation are discussed. Experiments revealed a charge state dependent preference for the loss of nucleobases, which are released either as neutrals or as anions. In contrast to DNA, nucleobase loss from homo-DNA was found to be decoupled from backbone cleavage, thus resulting in stable products. This renders an additional stage of ion activation necessary in order to generate sequence-defining fragment ions. Upon MS(3) of the primary base-loss ion, homo-DNA was found to exhibit unspecific backbone dissociation resulting in a balanced distribution of all fragment ion series.

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Year:  2013        PMID: 24043521     DOI: 10.1007/s13361-013-0729-3

Source DB:  PubMed          Journal:  J Am Soc Mass Spectrom        ISSN: 1044-0305            Impact factor:   3.109


  31 in total

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3.  Thermal decomposition of multiply charged T-rich oligonucleotide anions in the gas phase. Influence of internal solvation on the arrhenius parameters for neutral base loss.

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Journal:  J Am Soc Mass Spectrom       Date:  2006-06-16       Impact factor: 3.109

4.  Crystal structure of homo-DNA and nature's choice of pentose over hexose in the genetic system.

Authors:  Martin Egli; Pradeep S Pallan; Rekha Pattanayek; Christopher J Wilds; Paolo Lubini; George Minasov; Max Dobler; Christian J Leumann; Albert Eschenmoser
Journal:  J Am Chem Soc       Date:  2006-08-23       Impact factor: 15.419

5.  Investigations of the metastable decay of DNA under ultraviolet matrix-assisted laser desorption/ionization conditions with post-source-decay analysis and hydrogen/deuterium exchange.

Authors:  J Gross; A Leisner; F Hillenkamp; S Hahner; M Karas; J Schäfer; F Lützenkirchen; E Nordhoff
Journal:  J Am Soc Mass Spectrom       Date:  1998-09       Impact factor: 3.109

6.  Survey of the proton affinities of adenine, cytosine, thymine and uracil dideoxyribonucleosides, deoxyribonucleosides and ribonucleosides.

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7.  Efficient nucleic acid detection by templated reductive quencher release.

Authors:  Raphael M Franzini; Eric T Kool
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8.  OMA and OPA--software-supported mass spectra analysis of native and modified nucleic acids.

Authors:  Adrien Nyakas; Lorenz C Blum; Silvan R Stucki; Jean-Louis Reymond; Stefan Schürch
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Review 9.  Oligonucleotide-templated reactions for sensing nucleic acids.

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  4 in total

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2.  What Hinders Electron Transfer Dissociation (ETD) of DNA Cations?

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3.  The Contribution of the Activation Entropy to the Gas-Phase Stability of Modified Nucleic Acid Duplexes.

Authors:  Yvonne Hari; Branislav Dugovič; Alena Istrate; Annabel Fignolé; Christian J Leumann; Stefan Schürch
Journal:  J Am Soc Mass Spectrom       Date:  2016-04-14       Impact factor: 3.109

4.  More than charged base loss--revisiting the fragmentation of highly charged oligonucleotides.

Authors:  Adrien Nyakas; Rahel P Eberle; Silvan R Stucki; Stefan Schürch
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  4 in total

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