Cargando…

Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity

Following the treads of our previous works on the unveiling of bioactive peptides encrypted in plant proteins from diverse species, the present manuscript reports the occurrence of four proof-of-concept intragenic antimicrobial peptides in human proteins, named Hs IAPs. These IAPs were prospected us...

Descripción completa

Detalles Bibliográficos
Autores principales: Brand, Guilherme D., Ramada, Marcelo H. S., Manickchand, Júlia R., Correa, Rafael, Ribeiro, Dalila J. S., Santos, Michele A., Vasconcelos, Andreanne G., Abrão, Fernando Y., Prates, Maura V., Murad, André M., Cardozo Fh, José L., Leite, José Roberto S. A., Magalhães, Kelly G., Oliveira, Aline L., Bloch, Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6684085/
https://www.ncbi.nlm.nih.gov/pubmed/31386688
http://dx.doi.org/10.1371/journal.pone.0220656
_version_ 1783442211666395136
author Brand, Guilherme D.
Ramada, Marcelo H. S.
Manickchand, Júlia R.
Correa, Rafael
Ribeiro, Dalila J. S.
Santos, Michele A.
Vasconcelos, Andreanne G.
Abrão, Fernando Y.
Prates, Maura V.
Murad, André M.
Cardozo Fh, José L.
Leite, José Roberto S. A.
Magalhães, Kelly G.
Oliveira, Aline L.
Bloch, Carlos
author_facet Brand, Guilherme D.
Ramada, Marcelo H. S.
Manickchand, Júlia R.
Correa, Rafael
Ribeiro, Dalila J. S.
Santos, Michele A.
Vasconcelos, Andreanne G.
Abrão, Fernando Y.
Prates, Maura V.
Murad, André M.
Cardozo Fh, José L.
Leite, José Roberto S. A.
Magalhães, Kelly G.
Oliveira, Aline L.
Bloch, Carlos
author_sort Brand, Guilherme D.
collection PubMed
description Following the treads of our previous works on the unveiling of bioactive peptides encrypted in plant proteins from diverse species, the present manuscript reports the occurrence of four proof-of-concept intragenic antimicrobial peptides in human proteins, named Hs IAPs. These IAPs were prospected using the software Kamal, synthesized by solid phase chemistry, and had their interactions with model phospholipid vesicles investigated by differential scanning calorimetry and circular dichroism. Their antimicrobial activity against bacteria, yeasts and filamentous fungi was determined, along with their cytotoxicity towards erythrocytes. Our data demonstrates that Hs IAPs are capable to bind model membranes while attaining α-helical structure, and to inhibit the growth of microorganisms at concentrations as low as 1μM. Hs02, a novel sixteen residue long internal peptide (KWAVRIIRKFIKGFIS-NH(2)) derived from the unconventional myosin 1h protein, was further investigated in its capacity to inhibit lipopolysaccharide-induced release of TNF-α in murine macrophages. Hs02 presented potent anti-inflammatory activity, inhibiting the release of TNF-α in LPS-primed cells at the lowest assayed concentration, 0.1 μM. A three-dimensional solution structure of Hs02 bound to DPC micelles was determined by Nuclear Magnetic Resonance. Our work exemplifies how the human genome can be mined for molecules with biotechnological potential in human health and demonstrates that IAPs are actual alternatives to antimicrobial peptides as pharmaceutical agents or in their many other putative applications.
format Online
Article
Text
id pubmed-6684085
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-66840852019-08-15 Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity Brand, Guilherme D. Ramada, Marcelo H. S. Manickchand, Júlia R. Correa, Rafael Ribeiro, Dalila J. S. Santos, Michele A. Vasconcelos, Andreanne G. Abrão, Fernando Y. Prates, Maura V. Murad, André M. Cardozo Fh, José L. Leite, José Roberto S. A. Magalhães, Kelly G. Oliveira, Aline L. Bloch, Carlos PLoS One Research Article Following the treads of our previous works on the unveiling of bioactive peptides encrypted in plant proteins from diverse species, the present manuscript reports the occurrence of four proof-of-concept intragenic antimicrobial peptides in human proteins, named Hs IAPs. These IAPs were prospected using the software Kamal, synthesized by solid phase chemistry, and had their interactions with model phospholipid vesicles investigated by differential scanning calorimetry and circular dichroism. Their antimicrobial activity against bacteria, yeasts and filamentous fungi was determined, along with their cytotoxicity towards erythrocytes. Our data demonstrates that Hs IAPs are capable to bind model membranes while attaining α-helical structure, and to inhibit the growth of microorganisms at concentrations as low as 1μM. Hs02, a novel sixteen residue long internal peptide (KWAVRIIRKFIKGFIS-NH(2)) derived from the unconventional myosin 1h protein, was further investigated in its capacity to inhibit lipopolysaccharide-induced release of TNF-α in murine macrophages. Hs02 presented potent anti-inflammatory activity, inhibiting the release of TNF-α in LPS-primed cells at the lowest assayed concentration, 0.1 μM. A three-dimensional solution structure of Hs02 bound to DPC micelles was determined by Nuclear Magnetic Resonance. Our work exemplifies how the human genome can be mined for molecules with biotechnological potential in human health and demonstrates that IAPs are actual alternatives to antimicrobial peptides as pharmaceutical agents or in their many other putative applications. Public Library of Science 2019-08-06 /pmc/articles/PMC6684085/ /pubmed/31386688 http://dx.doi.org/10.1371/journal.pone.0220656 Text en © 2019 Brand et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Brand, Guilherme D.
Ramada, Marcelo H. S.
Manickchand, Júlia R.
Correa, Rafael
Ribeiro, Dalila J. S.
Santos, Michele A.
Vasconcelos, Andreanne G.
Abrão, Fernando Y.
Prates, Maura V.
Murad, André M.
Cardozo Fh, José L.
Leite, José Roberto S. A.
Magalhães, Kelly G.
Oliveira, Aline L.
Bloch, Carlos
Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity
title Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity
title_full Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity
title_fullStr Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity
title_full_unstemmed Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity
title_short Intragenic antimicrobial peptides (IAPs) from human proteins with potent antimicrobial and anti-inflammatory activity
title_sort intragenic antimicrobial peptides (iaps) from human proteins with potent antimicrobial and anti-inflammatory activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6684085/
https://www.ncbi.nlm.nih.gov/pubmed/31386688
http://dx.doi.org/10.1371/journal.pone.0220656
work_keys_str_mv AT brandguilhermed intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT ramadamarcelohs intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT manickchandjuliar intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT correarafael intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT ribeirodalilajs intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT santosmichelea intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT vasconcelosandreanneg intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT abraofernandoy intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT pratesmaurav intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT muradandrem intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT cardozofhjosel intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT leitejoserobertosa intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT magalhaeskellyg intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT oliveiraalinel intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity
AT blochcarlos intragenicantimicrobialpeptidesiapsfromhumanproteinswithpotentantimicrobialandantiinflammatoryactivity