Cargando…
The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties
The wasp venom‐derived antimicrobial peptide polybia‐CP has been previously shown to exhibit potent antimicrobial activity, but it is also highly toxic. Previously, using a physicochemical‐guided peptide design strategy, we reversed its toxicity while preserving and even enhancing its antibacterial...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley & Sons, Inc.
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7510464/ https://www.ncbi.nlm.nih.gov/pubmed/33005737 http://dx.doi.org/10.1002/btm2.10167 |
_version_ | 1783585793235746816 |
---|---|
author | Torres, Marcelo D. T. Silva, Adriana F. Andrade, Gislaine P. Pedron, Cibele N. Cerchiaro, Giselle Ribeiro, Anderson O. Oliveira, Vani X. de la Fuente‐Nunez, Cesar |
author_facet | Torres, Marcelo D. T. Silva, Adriana F. Andrade, Gislaine P. Pedron, Cibele N. Cerchiaro, Giselle Ribeiro, Anderson O. Oliveira, Vani X. de la Fuente‐Nunez, Cesar |
author_sort | Torres, Marcelo D. T. |
collection | PubMed |
description | The wasp venom‐derived antimicrobial peptide polybia‐CP has been previously shown to exhibit potent antimicrobial activity, but it is also highly toxic. Previously, using a physicochemical‐guided peptide design strategy, we reversed its toxicity while preserving and even enhancing its antibacterial properties. Here, we report on several additional unanticipated biological properties of polybia‐CP and derivatives, namely their ability to target Plasmodium sporozoites and cancer cells. We leverage a physicochemical‐guided approach to identify features that operate as functional hotspots making these peptides viable antiplasmodial and anticancer agents. Helical content and net positive charge are identified as key structural and physicochemical determinants for antiplasmodial activity. In addition to helicity and net charge, hydrophobicity‐related properties of polybia‐CP and derivatives were found to be equally critical to target cancer cells. We demonstrate that by tuning these physicochemical parameters, it is possible to design synthetic peptides with enhanced submicromolar antiplasmodial potency and micromolar anticancer activity. This study reveals novel and previously undescribed functions for Polybia‐CP and analogs. Additionally, we demonstrate that a physicochemical‐guided rational design strategy can be used for identifying functional hotspots in peptide molecules and for tuning structure–function to generate novel and potent new‐to‐nature therapies. |
format | Online Article Text |
id | pubmed-7510464 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | John Wiley & Sons, Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-75104642020-09-30 The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties Torres, Marcelo D. T. Silva, Adriana F. Andrade, Gislaine P. Pedron, Cibele N. Cerchiaro, Giselle Ribeiro, Anderson O. Oliveira, Vani X. de la Fuente‐Nunez, Cesar Bioeng Transl Med Rapid Communications The wasp venom‐derived antimicrobial peptide polybia‐CP has been previously shown to exhibit potent antimicrobial activity, but it is also highly toxic. Previously, using a physicochemical‐guided peptide design strategy, we reversed its toxicity while preserving and even enhancing its antibacterial properties. Here, we report on several additional unanticipated biological properties of polybia‐CP and derivatives, namely their ability to target Plasmodium sporozoites and cancer cells. We leverage a physicochemical‐guided approach to identify features that operate as functional hotspots making these peptides viable antiplasmodial and anticancer agents. Helical content and net positive charge are identified as key structural and physicochemical determinants for antiplasmodial activity. In addition to helicity and net charge, hydrophobicity‐related properties of polybia‐CP and derivatives were found to be equally critical to target cancer cells. We demonstrate that by tuning these physicochemical parameters, it is possible to design synthetic peptides with enhanced submicromolar antiplasmodial potency and micromolar anticancer activity. This study reveals novel and previously undescribed functions for Polybia‐CP and analogs. Additionally, we demonstrate that a physicochemical‐guided rational design strategy can be used for identifying functional hotspots in peptide molecules and for tuning structure–function to generate novel and potent new‐to‐nature therapies. John Wiley & Sons, Inc. 2020-06-05 /pmc/articles/PMC7510464/ /pubmed/33005737 http://dx.doi.org/10.1002/btm2.10167 Text en © 2020 The Authors. Bioengineering & Translational Medicine published by Wiley Periodicals, Inc. on behalf of The American Institute of Chemical Engineers. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Rapid Communications Torres, Marcelo D. T. Silva, Adriana F. Andrade, Gislaine P. Pedron, Cibele N. Cerchiaro, Giselle Ribeiro, Anderson O. Oliveira, Vani X. de la Fuente‐Nunez, Cesar The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties |
title | The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties |
title_full | The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties |
title_fullStr | The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties |
title_full_unstemmed | The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties |
title_short | The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties |
title_sort | wasp venom antimicrobial peptide polybia‐cp and its synthetic derivatives display antiplasmodial and anticancer properties |
topic | Rapid Communications |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7510464/ https://www.ncbi.nlm.nih.gov/pubmed/33005737 http://dx.doi.org/10.1002/btm2.10167 |
work_keys_str_mv | AT torresmarcelodt thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT silvaadrianaf thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT andradegislainep thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT pedroncibelen thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT cerchiarogiselle thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT ribeiroandersono thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT oliveiravanix thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT delafuentenunezcesar thewaspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT torresmarcelodt waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT silvaadrianaf waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT andradegislainep waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT pedroncibelen waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT cerchiarogiselle waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT ribeiroandersono waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT oliveiravanix waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties AT delafuentenunezcesar waspvenomantimicrobialpeptidepolybiacpanditssyntheticderivativesdisplayantiplasmodialandanticancerproperties |