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Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues

7-Azatryptophan and 2,7-diazatryptophan are sensitive to polarity changes and water content, respectively, and should be ideal for studying protein-protein and protein-peptide interactions. In this study, we replaced the tryptophan in peptide Baa (LKWKKLLKLLKKLLKLG-NH(2)) with 7-azatryptophan or 2,7...

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Autores principales: Chen, Yi-Ting, Chao, Wei-Chih, Kuo, Hsiou-Ting, Shen, Jiun-Yi, Chen, I-Han, Yang, Hsiao-Ching, Wang, Jinn-Shyan, Lu, Jyh-Feng, Cheng, Richard P., Chou, Pi-Tai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5613298/
https://www.ncbi.nlm.nih.gov/pubmed/28955897
http://dx.doi.org/10.1016/j.bbrep.2016.05.022
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author Chen, Yi-Ting
Chao, Wei-Chih
Kuo, Hsiou-Ting
Shen, Jiun-Yi
Chen, I-Han
Yang, Hsiao-Ching
Wang, Jinn-Shyan
Lu, Jyh-Feng
Cheng, Richard P.
Chou, Pi-Tai
author_facet Chen, Yi-Ting
Chao, Wei-Chih
Kuo, Hsiou-Ting
Shen, Jiun-Yi
Chen, I-Han
Yang, Hsiao-Ching
Wang, Jinn-Shyan
Lu, Jyh-Feng
Cheng, Richard P.
Chou, Pi-Tai
author_sort Chen, Yi-Ting
collection PubMed
description 7-Azatryptophan and 2,7-diazatryptophan are sensitive to polarity changes and water content, respectively, and should be ideal for studying protein-protein and protein-peptide interactions. In this study, we replaced the tryptophan in peptide Baa (LKWKKLLKLLKKLLKLG-NH(2)) with 7-azatryptophan or 2,7-diazatryptophan, forming (7-aza)Trp-Baa and (2,7-aza)Trp-Baa, to study the calmodulin (CaM)-peptide interaction. Dramatic differences in the (7-aza)Trp-Baa and (2,7-aza)Trp-Baa fluorescence properties between free peptide in water and calmodulin-bound peptide were observed, showing a less polar and water scant environment at the binding interface of the peptide upon calmodulin binding. The affinity of the peptides for binding CaM followed the trend Baa (210±10 pM)<(7-aza)Trp-Baa (109±5 pM)<(2,7-aza)Trp-Baa (45±2 pM), showing moderate increase in binding affinity upon increasing the number of nitrogen atoms in the Trp analogue. The increased binding affinity may be due to the formation of more hydrogen bonds upon binding CaM for the Trp analogue with more nitrogen atoms. Importantly, the results demonstrate that (7-aza)Trp and (2,7-aza)Trp are excellent probes for exploring the environment at the interface of protein-peptide interactions.
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spelling pubmed-56132982017-09-27 Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues Chen, Yi-Ting Chao, Wei-Chih Kuo, Hsiou-Ting Shen, Jiun-Yi Chen, I-Han Yang, Hsiao-Ching Wang, Jinn-Shyan Lu, Jyh-Feng Cheng, Richard P. Chou, Pi-Tai Biochem Biophys Rep Research Article 7-Azatryptophan and 2,7-diazatryptophan are sensitive to polarity changes and water content, respectively, and should be ideal for studying protein-protein and protein-peptide interactions. In this study, we replaced the tryptophan in peptide Baa (LKWKKLLKLLKKLLKLG-NH(2)) with 7-azatryptophan or 2,7-diazatryptophan, forming (7-aza)Trp-Baa and (2,7-aza)Trp-Baa, to study the calmodulin (CaM)-peptide interaction. Dramatic differences in the (7-aza)Trp-Baa and (2,7-aza)Trp-Baa fluorescence properties between free peptide in water and calmodulin-bound peptide were observed, showing a less polar and water scant environment at the binding interface of the peptide upon calmodulin binding. The affinity of the peptides for binding CaM followed the trend Baa (210±10 pM)<(7-aza)Trp-Baa (109±5 pM)<(2,7-aza)Trp-Baa (45±2 pM), showing moderate increase in binding affinity upon increasing the number of nitrogen atoms in the Trp analogue. The increased binding affinity may be due to the formation of more hydrogen bonds upon binding CaM for the Trp analogue with more nitrogen atoms. Importantly, the results demonstrate that (7-aza)Trp and (2,7-aza)Trp are excellent probes for exploring the environment at the interface of protein-peptide interactions. Elsevier 2016-06-02 /pmc/articles/PMC5613298/ /pubmed/28955897 http://dx.doi.org/10.1016/j.bbrep.2016.05.022 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Chen, Yi-Ting
Chao, Wei-Chih
Kuo, Hsiou-Ting
Shen, Jiun-Yi
Chen, I-Han
Yang, Hsiao-Ching
Wang, Jinn-Shyan
Lu, Jyh-Feng
Cheng, Richard P.
Chou, Pi-Tai
Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
title Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
title_full Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
title_fullStr Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
title_full_unstemmed Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
title_short Probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
title_sort probing the polarity and water environment at the protein-peptide binding interface using tryptophan analogues
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5613298/
https://www.ncbi.nlm.nih.gov/pubmed/28955897
http://dx.doi.org/10.1016/j.bbrep.2016.05.022
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