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PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis

PNC-27, a 32-residue peptide that contains an HDM-2 binding domain and a cell-penetrating peptide (CPP) leader sequence kills cancer, but not normal, cells by binding to HDM-2 associated with the plasma membrane and induces the formation of pores causing tumor cell lysis and necrosis. Conformational...

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Autores principales: Sarafraz-Yazdi, Ehsan, Mumin, Stephen, Cheung, Diana, Fridman, Daniel, Lin, Brian, Wong, Lawrence, Rosal, Ramon, Rudolph, Rebecca, Frenkel, Matthew, Thadi, Anusha, Morano, William F., Bowne, Wilbur B., Pincus, Matthew R., Michl, Josef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138867/
https://www.ncbi.nlm.nih.gov/pubmed/35625682
http://dx.doi.org/10.3390/biomedicines10050945
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author Sarafraz-Yazdi, Ehsan
Mumin, Stephen
Cheung, Diana
Fridman, Daniel
Lin, Brian
Wong, Lawrence
Rosal, Ramon
Rudolph, Rebecca
Frenkel, Matthew
Thadi, Anusha
Morano, William F.
Bowne, Wilbur B.
Pincus, Matthew R.
Michl, Josef
author_facet Sarafraz-Yazdi, Ehsan
Mumin, Stephen
Cheung, Diana
Fridman, Daniel
Lin, Brian
Wong, Lawrence
Rosal, Ramon
Rudolph, Rebecca
Frenkel, Matthew
Thadi, Anusha
Morano, William F.
Bowne, Wilbur B.
Pincus, Matthew R.
Michl, Josef
author_sort Sarafraz-Yazdi, Ehsan
collection PubMed
description PNC-27, a 32-residue peptide that contains an HDM-2 binding domain and a cell-penetrating peptide (CPP) leader sequence kills cancer, but not normal, cells by binding to HDM-2 associated with the plasma membrane and induces the formation of pores causing tumor cell lysis and necrosis. Conformational energy calculations on the structure of PNC-27 bound to HDM-2 suggest that 1:1 complexes form between PNC-27 and HDM-2 with the leader sequence pointing away from the complex. Immuno-scanning electron microscopy was carried out with cancer cells treated with PNC-27 and decorated with an anti-PNC-27 antibody coupled to 6 nm gold particles and an anti-HDM-2 antibody linked to 15 nm gold particles. We found multiple 6 nm- and 15 nm-labeled gold particles in approximately 1:1 ratios in layered ring-shaped structures in the pores near the cell surface suggesting that these complexes are important to the pore structure. No pores formed in the control, PNC-27-treated untransformed fibroblasts. Based on the theoretical and immuno-EM studies, we propose that the pores are lined by PNC-27 bound to HDM-2 at the membrane surface with the PNC-27 leader sequence lining the pores or by PNC-27 bound to HDM-2.
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spelling pubmed-91388672022-05-28 PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis Sarafraz-Yazdi, Ehsan Mumin, Stephen Cheung, Diana Fridman, Daniel Lin, Brian Wong, Lawrence Rosal, Ramon Rudolph, Rebecca Frenkel, Matthew Thadi, Anusha Morano, William F. Bowne, Wilbur B. Pincus, Matthew R. Michl, Josef Biomedicines Article PNC-27, a 32-residue peptide that contains an HDM-2 binding domain and a cell-penetrating peptide (CPP) leader sequence kills cancer, but not normal, cells by binding to HDM-2 associated with the plasma membrane and induces the formation of pores causing tumor cell lysis and necrosis. Conformational energy calculations on the structure of PNC-27 bound to HDM-2 suggest that 1:1 complexes form between PNC-27 and HDM-2 with the leader sequence pointing away from the complex. Immuno-scanning electron microscopy was carried out with cancer cells treated with PNC-27 and decorated with an anti-PNC-27 antibody coupled to 6 nm gold particles and an anti-HDM-2 antibody linked to 15 nm gold particles. We found multiple 6 nm- and 15 nm-labeled gold particles in approximately 1:1 ratios in layered ring-shaped structures in the pores near the cell surface suggesting that these complexes are important to the pore structure. No pores formed in the control, PNC-27-treated untransformed fibroblasts. Based on the theoretical and immuno-EM studies, we propose that the pores are lined by PNC-27 bound to HDM-2 at the membrane surface with the PNC-27 leader sequence lining the pores or by PNC-27 bound to HDM-2. MDPI 2022-04-20 /pmc/articles/PMC9138867/ /pubmed/35625682 http://dx.doi.org/10.3390/biomedicines10050945 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
Sarafraz-Yazdi, Ehsan
Mumin, Stephen
Cheung, Diana
Fridman, Daniel
Lin, Brian
Wong, Lawrence
Rosal, Ramon
Rudolph, Rebecca
Frenkel, Matthew
Thadi, Anusha
Morano, William F.
Bowne, Wilbur B.
Pincus, Matthew R.
Michl, Josef
PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis
title PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis
title_full PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis
title_fullStr PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis
title_full_unstemmed PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis
title_short PNC-27, a Chimeric p53-Penetratin Peptide Binds to HDM-2 in a p53 Peptide-like Structure, Induces Selective Membrane-Pore Formation and Leads to Cancer Cell Lysis
title_sort pnc-27, a chimeric p53-penetratin peptide binds to hdm-2 in a p53 peptide-like structure, induces selective membrane-pore formation and leads to cancer cell lysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138867/
https://www.ncbi.nlm.nih.gov/pubmed/35625682
http://dx.doi.org/10.3390/biomedicines10050945
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