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Béla Paizs

Researcher at Bangor University

Publications -  78
Citations -  5494

Béla Paizs is an academic researcher from Bangor University. The author has contributed to research in topics: Protonation & Fragmentation (mass spectrometry). The author has an hindex of 40, co-authored 78 publications receiving 5332 citations. Previous affiliations of Béla Paizs include University of Florida & Fritz Haber Institute of the Max Planck Society.

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Fragmentation pathways of protonated peptides

TL;DR: It is shown that the 'mobile proton' model of peptide fragmentation can be used to understand the MS/MS spectra of protonated peptides only in a qualitative manner rationalizing differences observed for low-energy collision induced dissociation of peptides having or lacking a mobile proton.
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Fragmentation Pathways of Protonated Peptides

TL;DR: In this paper, the authors used the pathways in competition (PIC) model to understand the MS/MS spectra of protonated peptides only in a qualitative manner rationalizing differences observed for low-energy collision induced dissociation of peptide ions having or lacking a mobile proton.
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Infrared spectroscopy and theoretical studies on gas-phase protonated leu-enkephalin and its fragments: direct experimental evidence for the mobile proton.

TL;DR: The presence of cyclic b4 and a4 fragment ions is the first direct experimental proof that fully cyclic structures are formed in CID, suggesting that their presence is significant and lending strong support to the recently discovered peptide fragmentation pathways.
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Scrambling of sequence information in collision-induced dissociation of peptides.

TL;DR: Experimental and theoretical evidence indicate that primary fragmentation of the intact peptide leads to the linear YAGFLoxa b5 ion with a C-terminal oxazolone ring that is attacked by the N- terminal amino group to induce formation of a cyclic peptide b5 isomer.
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Towards understanding the tandem mass spectra of protonated oligopeptides. 1: mechanism of amide bond cleavage

TL;DR: Modeling the bx-yz pathways of protonated pentaalanine leads for the first time to semi-quantitative understanding of the tandem mass spectra of a protonate oligopeptide.