Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy

Anna Rita Bizzarri1, Simona Santini1, Emilia Coppari1, Monica Bucciantini2, Silvia Di Agostino3, Tohru Yamada4, Craig W Beattie4, Salvatore Cannistraro11Biophysics and Nanoscience Centre, CNISM, Facoltà di Scienze, Università della Tuscia, Viterbo, 2Department of Bioche...

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Main Authors: Bizzarri AR, Santini S, Coppari E, Bucciantini M, Di Agostino S, Yamada T, Beattie CW, Cannistraro S
Format: Article
Language:English
Published: Dove Medical Press 2011-11-01
Series:International Journal of Nanomedicine
Online Access:http://www.dovepress.com/interaction-of-an-anticancer-peptide-fragment-of-azurin-with-p53-and-i-a8732
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spelling doaj-71d1f5546f2d4710beee70d97e3fc5742020-11-24T21:47:42ZengDove Medical PressInternational Journal of Nanomedicine1176-91141178-20132011-11-012011default30113019Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopyBizzarri ARSantini SCoppari EBucciantini MDi Agostino SYamada TBeattie CWCannistraro SAnna Rita Bizzarri1, Simona Santini1, Emilia Coppari1, Monica Bucciantini2, Silvia Di Agostino3, Tohru Yamada4, Craig W Beattie4, Salvatore Cannistraro11Biophysics and Nanoscience Centre, CNISM, Facoltà di Scienze, Università della Tuscia, Viterbo, 2Department of Biochemical Sciences, University of Florence, Florence, 3Molecular Oncogenesis Laboratory, Experimental Oncology Department, Regina Elena Cancer Institute, Rome, Italy; 4Department of Surgical Oncology, University of Illinois College of Medicine, Chicago, IL, USAAbstract: p28 is a 28-amino acid peptide fragment of the cupredoxin azurin derived from Pseudomonas aeruginosa that preferentially penetrates cancerous cells and arrests their proliferation in vitro and in vivo. Its antitumor activity reportedly arises from post-translational stabilization of the tumor suppressor p53 normally downregulated by the binding of several ubiquitin ligases. This would require p28 to specifically bind to p53 to inhibit specific ligases from initiating proteosome-mediated degradation. In this study, atomic force spectroscopy, a nanotechnological approach, was used to investigate the interaction of p28 with full-length p53 and its isolated domains at the single molecule level. Analysis of the unbinding forces and the dissociation rate constant suggest that p28 forms a stable complex with the DNA-binding domain of p53, inhibiting the binding of ubiquitin ligases other than Mdm2 to reduce proteasomal degradation of p53.Keywords: AFS, cancer physics, unbinding forceshttp://www.dovepress.com/interaction-of-an-anticancer-peptide-fragment-of-azurin-with-p53-and-i-a8732
collection DOAJ
language English
format Article
sources DOAJ
author Bizzarri AR
Santini S
Coppari E
Bucciantini M
Di Agostino S
Yamada T
Beattie CW
Cannistraro S
spellingShingle Bizzarri AR
Santini S
Coppari E
Bucciantini M
Di Agostino S
Yamada T
Beattie CW
Cannistraro S
Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
International Journal of Nanomedicine
author_facet Bizzarri AR
Santini S
Coppari E
Bucciantini M
Di Agostino S
Yamada T
Beattie CW
Cannistraro S
author_sort Bizzarri AR
title Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
title_short Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
title_full Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
title_fullStr Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
title_full_unstemmed Interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
title_sort interaction of an anticancer peptide fragment of azurin with p53 and its isolated domains studied by atomic force spectroscopy
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1176-9114
1178-2013
publishDate 2011-11-01
description Anna Rita Bizzarri1, Simona Santini1, Emilia Coppari1, Monica Bucciantini2, Silvia Di Agostino3, Tohru Yamada4, Craig W Beattie4, Salvatore Cannistraro11Biophysics and Nanoscience Centre, CNISM, Facoltà di Scienze, Università della Tuscia, Viterbo, 2Department of Biochemical Sciences, University of Florence, Florence, 3Molecular Oncogenesis Laboratory, Experimental Oncology Department, Regina Elena Cancer Institute, Rome, Italy; 4Department of Surgical Oncology, University of Illinois College of Medicine, Chicago, IL, USAAbstract: p28 is a 28-amino acid peptide fragment of the cupredoxin azurin derived from Pseudomonas aeruginosa that preferentially penetrates cancerous cells and arrests their proliferation in vitro and in vivo. Its antitumor activity reportedly arises from post-translational stabilization of the tumor suppressor p53 normally downregulated by the binding of several ubiquitin ligases. This would require p28 to specifically bind to p53 to inhibit specific ligases from initiating proteosome-mediated degradation. In this study, atomic force spectroscopy, a nanotechnological approach, was used to investigate the interaction of p28 with full-length p53 and its isolated domains at the single molecule level. Analysis of the unbinding forces and the dissociation rate constant suggest that p28 forms a stable complex with the DNA-binding domain of p53, inhibiting the binding of ubiquitin ligases other than Mdm2 to reduce proteasomal degradation of p53.Keywords: AFS, cancer physics, unbinding forces
url http://www.dovepress.com/interaction-of-an-anticancer-peptide-fragment-of-azurin-with-p53-and-i-a8732
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