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Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability

The development of peptide inhibitors against intracellular targets depends upon the dual challenge of achieving a high affinity and specificity for the target and maintaining cellular permeability for biological activity. Previous efforts to develop bicyclic peptides targeted to the Grb7 signalling...

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Autores principales: Sturre, Natasha P., Colson, Rhys N., Shah, Neelam, Watson, Gabrielle M., Yang, Xue, Wilce, Matthew C. J., Price, John T., Wilce, Jacqueline A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138261/
https://www.ncbi.nlm.nih.gov/pubmed/35625882
http://dx.doi.org/10.3390/biomedicines10051145
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author Sturre, Natasha P.
Colson, Rhys N.
Shah, Neelam
Watson, Gabrielle M.
Yang, Xue
Wilce, Matthew C. J.
Price, John T.
Wilce, Jacqueline A.
author_facet Sturre, Natasha P.
Colson, Rhys N.
Shah, Neelam
Watson, Gabrielle M.
Yang, Xue
Wilce, Matthew C. J.
Price, John T.
Wilce, Jacqueline A.
author_sort Sturre, Natasha P.
collection PubMed
description The development of peptide inhibitors against intracellular targets depends upon the dual challenge of achieving a high affinity and specificity for the target and maintaining cellular permeability for biological activity. Previous efforts to develop bicyclic peptides targeted to the Grb7 signalling protein implicated in HER2+ve cancer progression have resulted in improved affinity. However, these same peptides demonstrated a lowered activity due to their decreased ability to penetrate cell membranes. Here, we report the testing of a new series of bicyclic G7 peptides designed to possess improved bioactivity. We discovered that the incorporation of two amino acids (Phe-Pro, Phe-Trp or Phe-Arg) within the bicyclic peptide framework maintains an enhanced binding affinity for the Grb7-SH2 domain compared to that of the first-generation monocyclic peptide G7-18NATE. Structure determination using X-ray crystallography revealed that the mode of binding by the expanded bicyclic G7 peptide is analogous to that of G7-18NATE. Interestingly, while the bicyclic peptide containing Phe-Trp did not display the highest affinity for Grb7-SH2 in the series, it was the most potent inhibitor of HER2+ve SKBR3 breast cancer cell migration when coupled to Penetratin. Together, this demonstrates that peptide flexibility as well as the amino acid tryptophan can play important roles in the uptake of peptides into the cell.
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spelling pubmed-91382612022-05-28 Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability Sturre, Natasha P. Colson, Rhys N. Shah, Neelam Watson, Gabrielle M. Yang, Xue Wilce, Matthew C. J. Price, John T. Wilce, Jacqueline A. Biomedicines Article The development of peptide inhibitors against intracellular targets depends upon the dual challenge of achieving a high affinity and specificity for the target and maintaining cellular permeability for biological activity. Previous efforts to develop bicyclic peptides targeted to the Grb7 signalling protein implicated in HER2+ve cancer progression have resulted in improved affinity. However, these same peptides demonstrated a lowered activity due to their decreased ability to penetrate cell membranes. Here, we report the testing of a new series of bicyclic G7 peptides designed to possess improved bioactivity. We discovered that the incorporation of two amino acids (Phe-Pro, Phe-Trp or Phe-Arg) within the bicyclic peptide framework maintains an enhanced binding affinity for the Grb7-SH2 domain compared to that of the first-generation monocyclic peptide G7-18NATE. Structure determination using X-ray crystallography revealed that the mode of binding by the expanded bicyclic G7 peptide is analogous to that of G7-18NATE. Interestingly, while the bicyclic peptide containing Phe-Trp did not display the highest affinity for Grb7-SH2 in the series, it was the most potent inhibitor of HER2+ve SKBR3 breast cancer cell migration when coupled to Penetratin. Together, this demonstrates that peptide flexibility as well as the amino acid tryptophan can play important roles in the uptake of peptides into the cell. MDPI 2022-05-16 /pmc/articles/PMC9138261/ /pubmed/35625882 http://dx.doi.org/10.3390/biomedicines10051145 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sturre, Natasha P.
Colson, Rhys N.
Shah, Neelam
Watson, Gabrielle M.
Yang, Xue
Wilce, Matthew C. J.
Price, John T.
Wilce, Jacqueline A.
Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability
title Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability
title_full Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability
title_fullStr Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability
title_full_unstemmed Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability
title_short Enhancing the Bioactivity of Bicyclic Peptides Targeted to Grb7-SH2 by Restoring Cell Permeability
title_sort enhancing the bioactivity of bicyclic peptides targeted to grb7-sh2 by restoring cell permeability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138261/
https://www.ncbi.nlm.nih.gov/pubmed/35625882
http://dx.doi.org/10.3390/biomedicines10051145
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