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Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin

Cross-strand lateral ion-pairing interactions are important for antiparallel β-sheet stability. Statistical studies suggested that swapping the position of cross-strand lateral residues should not significantly affect the interaction. Herein, we swapped the position of ammonium- and carboxylate-cont...

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Autores principales: Huang, Cheng-Hsin, Wong, Tong Wai, Yu, Chen-Hsu, Chang, Jing-Yuan, Huang, Shing-Jong, Huang, Shou-Ling, Cheng, Richard P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961788/
https://www.ncbi.nlm.nih.gov/pubmed/33802596
http://dx.doi.org/10.3390/molecules26051346
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author Huang, Cheng-Hsin
Wong, Tong Wai
Yu, Chen-Hsu
Chang, Jing-Yuan
Huang, Shing-Jong
Huang, Shou-Ling
Cheng, Richard P.
author_facet Huang, Cheng-Hsin
Wong, Tong Wai
Yu, Chen-Hsu
Chang, Jing-Yuan
Huang, Shing-Jong
Huang, Shou-Ling
Cheng, Richard P.
author_sort Huang, Cheng-Hsin
collection PubMed
description Cross-strand lateral ion-pairing interactions are important for antiparallel β-sheet stability. Statistical studies suggested that swapping the position of cross-strand lateral residues should not significantly affect the interaction. Herein, we swapped the position of ammonium- and carboxylate-containing residues with different side-chain lengths in a cross-strand lateral ion-pairing interaction in a β-hairpin. The peptides were analyzed by 2D-NMR. The fraction folded population and folding free energy were derived from the chemical shift data. The ion-pairing interaction energy was derived using double mutant cycle analysis. The general trends for the fraction folded population and interaction energetics remained similar upon swapping the position of the interacting charged residues. The most stabilizing cross-strand interactions were between short residues, similar to the unswapped study. However, the fraction folded populations for most of the swapped peptides were higher compared to the corresponding unswapped peptides. Furthermore, subtle differences in the ion-pairing interaction energy upon swapping were observed, most likely due to the “unleveled” relative positioning of the interacting residues created by the inherent right-handed twist of the structure. These results should be useful for developing functional peptides that rely on lateral ion-pairing interactions across antiparallel β-strands.
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spelling pubmed-79617882021-03-17 Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin Huang, Cheng-Hsin Wong, Tong Wai Yu, Chen-Hsu Chang, Jing-Yuan Huang, Shing-Jong Huang, Shou-Ling Cheng, Richard P. Molecules Article Cross-strand lateral ion-pairing interactions are important for antiparallel β-sheet stability. Statistical studies suggested that swapping the position of cross-strand lateral residues should not significantly affect the interaction. Herein, we swapped the position of ammonium- and carboxylate-containing residues with different side-chain lengths in a cross-strand lateral ion-pairing interaction in a β-hairpin. The peptides were analyzed by 2D-NMR. The fraction folded population and folding free energy were derived from the chemical shift data. The ion-pairing interaction energy was derived using double mutant cycle analysis. The general trends for the fraction folded population and interaction energetics remained similar upon swapping the position of the interacting charged residues. The most stabilizing cross-strand interactions were between short residues, similar to the unswapped study. However, the fraction folded populations for most of the swapped peptides were higher compared to the corresponding unswapped peptides. Furthermore, subtle differences in the ion-pairing interaction energy upon swapping were observed, most likely due to the “unleveled” relative positioning of the interacting residues created by the inherent right-handed twist of the structure. These results should be useful for developing functional peptides that rely on lateral ion-pairing interactions across antiparallel β-strands. MDPI 2021-03-03 /pmc/articles/PMC7961788/ /pubmed/33802596 http://dx.doi.org/10.3390/molecules26051346 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Huang, Cheng-Hsin
Wong, Tong Wai
Yu, Chen-Hsu
Chang, Jing-Yuan
Huang, Shing-Jong
Huang, Shou-Ling
Cheng, Richard P.
Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin
title Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin
title_full Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin
title_fullStr Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin
title_full_unstemmed Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin
title_short Swapping the Positions in a Cross-Strand Lateral Ion-Pairing Interaction between Ammonium- and Carboxylate-Containing Residues in a β-Hairpin
title_sort swapping the positions in a cross-strand lateral ion-pairing interaction between ammonium- and carboxylate-containing residues in a β-hairpin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961788/
https://www.ncbi.nlm.nih.gov/pubmed/33802596
http://dx.doi.org/10.3390/molecules26051346
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