Biological characterization of compounds from Rhinella schneideri poison that act on the complement system

Background The skin secretions of toads of the family Bufonidae contain biogenic amines, alkaloids, steroids (bufotoxins), bufodienolides (bufogenin), peptides and proteins. The poison of Rhinella schneideri, formerly classified as Bufo paracnemis, presents components that act on different biologica...

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Main Authors: Fernando A. P. Anjolette, Flávia P. Leite, Karla C. F. Bordon, Ana Elisa C. S Azzolini, Juliana C. Pereira, Luciana S. Pereira-Crott, Eliane C. Arantes
Format: Article
Language:English
Published: SciELO 2015-09-01
Series:Journal of Venomous Animals and Toxins including Tropical Diseases
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992015000100334&lng=en&tlng=en
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spelling doaj-bdaf2f6de8a8492d838b02bdc43193142020-11-25T00:09:02ZengSciELOJournal of Venomous Animals and Toxins including Tropical Diseases1678-91992015-09-0121010.1186/s40409-015-0024-9S1678-91992015000100334Biological characterization of compounds from Rhinella schneideri poison that act on the complement systemFernando A. P. AnjoletteFlávia P. LeiteKarla C. F. BordonAna Elisa C. S AzzoliniJuliana C. PereiraLuciana S. Pereira-CrottEliane C. ArantesBackground The skin secretions of toads of the family Bufonidae contain biogenic amines, alkaloids, steroids (bufotoxins), bufodienolides (bufogenin), peptides and proteins. The poison of Rhinella schneideri, formerly classified as Bufo paracnemis, presents components that act on different biological systems, including the complement system. The aim of this study was to isolate and examine the activity ofRhinella schneideri poison (RsP) components on the complement system.Methods The components active on the complement system were purified in three chromatographic steps, using a combination of cation-exchange, anion-exchange and gel filtration chromatography. The resulting fractions were analyzed by SDS-PAGE and screened for their activity in the hemolytic assay of the classical/lectin complement pathways. Fractions active on the complement system were also assessed for their ability to generate C3 fragments evaluated by two dimensional immunoelectrophoresis assay, C3a and C5a by neutrophil chemotaxis assay and SC5b-9 complex by ELISA assay.Results The fractionation protocol was able to isolate the component S5 from theRsP, as demonstrated by SDS-PAGE and the RP-FPLC profile. S5 is a protein of about 6000 Da, while S2 presents components of higher molecular mass (40,000 to 50,000 Da). Fractions S2 and S5 attenuated the hemolytic activity of the classical/lectin pathways after preincubation with normal human serum. Both components stimulated complement-dependent neutrophil chemotaxis and the production of C3 fragments, as shown by two-dimensional immunoelectrophoresis. S2 showed a higher capacity to generate the SC5b- 9 complex than the other fractions. This action was observed after the exposure of normal human serum to the fractions.Conclusions This is the first study to examine the activity of RsP components on the complement system. Fractions S2 and S5 reduced the complement hemolytic activity, stimulated complement-dependent neutrophil chemotaxis and stimulated the production of C3 fragments, indicating that they were able to activate the complement cascade. Furthermore, fraction S2 was also able to generate the SC5b-9 complex. These components may be useful tools for studying dysfunction of the complement cascade.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992015000100334&lng=en&tlng=enComplement systemHemolytic activityNeutrophil chemotaxisRhinella schneideriTerminal complement complex (SC5b-9)Toad poison
collection DOAJ
language English
format Article
sources DOAJ
author Fernando A. P. Anjolette
Flávia P. Leite
Karla C. F. Bordon
Ana Elisa C. S Azzolini
Juliana C. Pereira
Luciana S. Pereira-Crott
Eliane C. Arantes
spellingShingle Fernando A. P. Anjolette
Flávia P. Leite
Karla C. F. Bordon
Ana Elisa C. S Azzolini
Juliana C. Pereira
Luciana S. Pereira-Crott
Eliane C. Arantes
Biological characterization of compounds from Rhinella schneideri poison that act on the complement system
Journal of Venomous Animals and Toxins including Tropical Diseases
Complement system
Hemolytic activity
Neutrophil chemotaxis
Rhinella schneideri
Terminal complement complex (SC5b-9)
Toad poison
author_facet Fernando A. P. Anjolette
Flávia P. Leite
Karla C. F. Bordon
Ana Elisa C. S Azzolini
Juliana C. Pereira
Luciana S. Pereira-Crott
Eliane C. Arantes
author_sort Fernando A. P. Anjolette
title Biological characterization of compounds from Rhinella schneideri poison that act on the complement system
title_short Biological characterization of compounds from Rhinella schneideri poison that act on the complement system
title_full Biological characterization of compounds from Rhinella schneideri poison that act on the complement system
title_fullStr Biological characterization of compounds from Rhinella schneideri poison that act on the complement system
title_full_unstemmed Biological characterization of compounds from Rhinella schneideri poison that act on the complement system
title_sort biological characterization of compounds from rhinella schneideri poison that act on the complement system
publisher SciELO
series Journal of Venomous Animals and Toxins including Tropical Diseases
issn 1678-9199
publishDate 2015-09-01
description Background The skin secretions of toads of the family Bufonidae contain biogenic amines, alkaloids, steroids (bufotoxins), bufodienolides (bufogenin), peptides and proteins. The poison of Rhinella schneideri, formerly classified as Bufo paracnemis, presents components that act on different biological systems, including the complement system. The aim of this study was to isolate and examine the activity ofRhinella schneideri poison (RsP) components on the complement system.Methods The components active on the complement system were purified in three chromatographic steps, using a combination of cation-exchange, anion-exchange and gel filtration chromatography. The resulting fractions were analyzed by SDS-PAGE and screened for their activity in the hemolytic assay of the classical/lectin complement pathways. Fractions active on the complement system were also assessed for their ability to generate C3 fragments evaluated by two dimensional immunoelectrophoresis assay, C3a and C5a by neutrophil chemotaxis assay and SC5b-9 complex by ELISA assay.Results The fractionation protocol was able to isolate the component S5 from theRsP, as demonstrated by SDS-PAGE and the RP-FPLC profile. S5 is a protein of about 6000 Da, while S2 presents components of higher molecular mass (40,000 to 50,000 Da). Fractions S2 and S5 attenuated the hemolytic activity of the classical/lectin pathways after preincubation with normal human serum. Both components stimulated complement-dependent neutrophil chemotaxis and the production of C3 fragments, as shown by two-dimensional immunoelectrophoresis. S2 showed a higher capacity to generate the SC5b- 9 complex than the other fractions. This action was observed after the exposure of normal human serum to the fractions.Conclusions This is the first study to examine the activity of RsP components on the complement system. Fractions S2 and S5 reduced the complement hemolytic activity, stimulated complement-dependent neutrophil chemotaxis and stimulated the production of C3 fragments, indicating that they were able to activate the complement cascade. Furthermore, fraction S2 was also able to generate the SC5b-9 complex. These components may be useful tools for studying dysfunction of the complement cascade.
topic Complement system
Hemolytic activity
Neutrophil chemotaxis
Rhinella schneideri
Terminal complement complex (SC5b-9)
Toad poison
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992015000100334&lng=en&tlng=en
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