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How change in chirality prevents -amyloid type interaction in a protonated cyclic dipeptide dimer

Physical chemistry chemical physics/PCCP Physical chemistry chemical physics(2022)

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摘要
The protonated dimers of the diketopiperazine dipeptide cyclo (lPhe-lHis) and cyclo (lPhe-dHis) are studied by laser spectroscopy combined with mass spectrometry to shed light on the influence of stereochemistry on the clustering propensity of cyclic dipeptides. The marked spectroscopic differences experimentally observed in the hydride stretch region are well accounted for by the results of DFT calculations. Both diastereomeric protonated dimers involve a strong ionic hydrogen bond from the protonated imidazole ring of one monomer to the neutral imidazole nitrogen of the other. While this strong interaction is accompanied by a single NHMIDLINE HORIZONTAL ELLIPSISO hydrogen bond between the amide functions of the two moieties for the protonated dimer of cyclo (lPhe-dHis), that of cyclo (lPhe-lHis) involves two NHMIDLINE HORIZONTAL ELLIPSISO interactions, forming the motif of an antiparallel beta sheet. Therefore, a change in chirality of the residue prevents the formation of the beta sheet pattern observed in the amyloid type aggregation. These results emphasize the peculiar role of the histidine residue in peptide structure and interaction.
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