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Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra

[Image: see text] It is reported that the cis/trans conformation change of the peptide hormone oxytocin plays an important role in its receptors and activation and the cis conformation does not lead to antagonistic activity. Motivated by recent experiments and theories, the quasi-static amide-I 2D I...

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Autores principales: Ren, Hai-Chao, Ji, Lin-Xiang, Chen, Tu-Nan, Liu, Yong-Gang, Liu, Rui-Peng, Wei, Dong-Qing, Jia, Xian-Zhen, Ji, Guang-Fu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8811763/
https://www.ncbi.nlm.nih.gov/pubmed/35128284
http://dx.doi.org/10.1021/acsomega.1c06600
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author Ren, Hai-Chao
Ji, Lin-Xiang
Chen, Tu-Nan
Liu, Yong-Gang
Liu, Rui-Peng
Wei, Dong-Qing
Jia, Xian-Zhen
Ji, Guang-Fu
author_facet Ren, Hai-Chao
Ji, Lin-Xiang
Chen, Tu-Nan
Liu, Yong-Gang
Liu, Rui-Peng
Wei, Dong-Qing
Jia, Xian-Zhen
Ji, Guang-Fu
author_sort Ren, Hai-Chao
collection PubMed
description [Image: see text] It is reported that the cis/trans conformation change of the peptide hormone oxytocin plays an important role in its receptors and activation and the cis conformation does not lead to antagonistic activity. Motivated by recent experiments and theories, the quasi-static amide-I 2D IR spectra of oxytocin are investigated using DFT/B3LYP (D3)/6-31G (d, p) in combination with the isotope labeling method under different electric fields. The theoretical amide-I IR spectra and bond length of the disulfide bond are consistent with the experimental values, which indicates that the theoretical modes are reasonable. Our theoretical results demonstrate that the oxytocin conformation is transformed from the cis conformation to the trans conformation with the change of the direction of the electric field, which is confirmed by the distance of the backbone carbonyl oxygen of Cys6 and Pro7, the Ramachandran plot of Cys6 and Pro7, the dihedral angle of C(β)-S-S-C(β), and the rmsd of the oxytocin backbone. Moreover, the trans conformation as the result of the turn in the vicinity of Pro7 has a tighter secondary spatial structure than the cis conformation, including stronger hydrogen bonds, longer γ-turn geometry involving five amino acids, and a more stable disulfide bond. Our work provides new insights into the relationship between the conformation, the activation of the peptide hormone oxytocin, and the electric fields.
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spelling pubmed-88117632022-02-04 Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra Ren, Hai-Chao Ji, Lin-Xiang Chen, Tu-Nan Liu, Yong-Gang Liu, Rui-Peng Wei, Dong-Qing Jia, Xian-Zhen Ji, Guang-Fu ACS Omega [Image: see text] It is reported that the cis/trans conformation change of the peptide hormone oxytocin plays an important role in its receptors and activation and the cis conformation does not lead to antagonistic activity. Motivated by recent experiments and theories, the quasi-static amide-I 2D IR spectra of oxytocin are investigated using DFT/B3LYP (D3)/6-31G (d, p) in combination with the isotope labeling method under different electric fields. The theoretical amide-I IR spectra and bond length of the disulfide bond are consistent with the experimental values, which indicates that the theoretical modes are reasonable. Our theoretical results demonstrate that the oxytocin conformation is transformed from the cis conformation to the trans conformation with the change of the direction of the electric field, which is confirmed by the distance of the backbone carbonyl oxygen of Cys6 and Pro7, the Ramachandran plot of Cys6 and Pro7, the dihedral angle of C(β)-S-S-C(β), and the rmsd of the oxytocin backbone. Moreover, the trans conformation as the result of the turn in the vicinity of Pro7 has a tighter secondary spatial structure than the cis conformation, including stronger hydrogen bonds, longer γ-turn geometry involving five amino acids, and a more stable disulfide bond. Our work provides new insights into the relationship between the conformation, the activation of the peptide hormone oxytocin, and the electric fields. American Chemical Society 2022-01-19 /pmc/articles/PMC8811763/ /pubmed/35128284 http://dx.doi.org/10.1021/acsomega.1c06600 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Ren, Hai-Chao
Ji, Lin-Xiang
Chen, Tu-Nan
Liu, Yong-Gang
Liu, Rui-Peng
Wei, Dong-Qing
Jia, Xian-Zhen
Ji, Guang-Fu
Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra
title Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra
title_full Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra
title_fullStr Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra
title_full_unstemmed Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra
title_short Revealing the Relationship between Electric Fields and the Conformation of Oxytocin Using Quasi-Static Amide-I Two-Dimensional Infrared Spectra
title_sort revealing the relationship between electric fields and the conformation of oxytocin using quasi-static amide-i two-dimensional infrared spectra
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8811763/
https://www.ncbi.nlm.nih.gov/pubmed/35128284
http://dx.doi.org/10.1021/acsomega.1c06600
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