Literature DB >> 11478962

Properties of St I and St II, two isotoxins isolated from Stichodactyla helianthus: a comparison.

D Martinez1, A M Campos, F Pazos, C Alvarez, M E Lanio, F Casallanovo, S Schreier, R K Salinas, C Vergara, E Lissi.   

Abstract

Sticholysins I and II are two highly hemolytic polypeptides purified from the Caribbean Sea anemone Stichodactyla helianthus. Their high sequence homology (93%) indicates that they correspond to isoforms of the same hemolysin. The spectroscopic measurements show a close similarity in the secondary structure content, conformation and stability of both toxins. Exposure of the toxins to high pHs (>11), a free radical source (AAPH), urea or temperature produce permanent changes in the toxin that lead to a significant loss of HA. It is significant to note that this loss of hemolytic activity occurs when other indicators, probably with the only exception of near-UV CD spectra, barely detect changes in the protein structure. This emphasizes the sensitivity of the protein function to changes in the macromolecule conformation. The most noticeable difference between both toxins is the considerably higher activity of St II, both measured in terms of erythrocyte internal K(+) exit or hemolysis; which is related to enthalpic factors. This difference is not due to an incomplete association of St I to the membrane. We consider then that the different pore forming capacity of both toxins in erythrocytes can be explained in terms of the difference in charge of the N-terminal fragment, than can considerably reduce the St I insertion rate in the membrane probably due to the negatively charged outer leaflet of the red blood cell, without a significant reduction of its capacity to bind to the cell membrane. This electrostatic effect, together with a slightly more relaxed structure in St II, could explain the higher pore forming capacity of St II in the red blood cell membrane.

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Year:  2001        PMID: 11478962     DOI: 10.1016/s0041-0101(01)00127-1

Source DB:  PubMed          Journal:  Toxicon        ISSN: 0041-0101            Impact factor:   3.033


  13 in total

1.  The membranotropic activity of N-terminal peptides from the pore-forming proteins sticholysin I and II is modulated by hydrophobic and electrostatic interactions as well as lipid composition.

Authors:  Uris Ros; Lohans Pedrera; DaylÍn Diaz; Juan C De Karam; Tatiane P Sudbrack; Pedro A Valiente; Diana MartÍnez; Eduardo M Cilli; Fabiola Pazos; Rosangela Itri; Maria E Lanio; Shirley Schreier; Carlos Ávarez
Journal:  J Biosci       Date:  2011-12       Impact factor: 1.826

2.  Effect of human serum albumin upon the permeabilizing activity of sticholysin II, a pore forming toxin from Stichodactyla heliantus.

Authors:  Gloria Celedón; Gustavo González; Felipe Gulppi; Fabiola Pazos; María E Lanio; Carlos Alvarez; Cristian Calderón; Rodrigo Montecinos; Eduardo Lissi
Journal:  Protein J       Date:  2013-12       Impact factor: 2.371

3.  Pharmacological effects of two cytolysins isolated from the sea anemone Stichodactyla helianthus.

Authors:  T García; D Martinez; A Palmero; C Soto; M Tejuca; F Pazos; R Menéndez; C Alvarez; A Garateix
Journal:  J Biosci       Date:  2009-12       Impact factor: 1.826

4.  Disrupting a key hydrophobic pair in the oligomerization interface of the actinoporins impairs their pore-forming activity.

Authors:  Haydeé Mesa-Galloso; Karelia H Delgado-Magnero; Sheila Cabezas; Aracelys López-Castilla; Jorge E Hernández-González; Lohans Pedrera; Carlos Alvarez; D Peter Tieleman; Ana J García-Sáez; Maria E Lanio; Uris Ros; Pedro A Valiente
Journal:  Protein Sci       Date:  2017-02-23       Impact factor: 6.725

5.  Novel Adjuvant Based on the Pore-Forming Protein Sticholysin II Encapsulated into Liposomes Effectively Enhances the Antigen-Specific CTL-Mediated Immune Response.

Authors:  Rady J Laborde; Oraly Sanchez-Ferras; María C Luzardo; Yoelys Cruz-Leal; Audry Fernández; Circe Mesa; Liliana Oliver; Liem Canet; Liane Abreu-Butin; Catarina V Nogueira; Mayra Tejuca; Fabiola Pazos; Carlos Álvarez; María E Alonso; Ieda M Longo-Maugéri; Michael N Starnbach; Darren E Higgins; Luis E Fernández; María E Lanio
Journal:  J Immunol       Date:  2017-03-03       Impact factor: 5.422

Review 6.  Biophysical and biochemical strategies to understand membrane binding and pore formation by sticholysins, pore-forming proteins from a sea anemone.

Authors:  Carlos Alvarez; Uris Ros; Aisel Valle; Lohans Pedrera; Carmen Soto; Yadira P Hervis; Sheila Cabezas; Pedro A Valiente; Fabiola Pazos; Maria E Lanio
Journal:  Biophys Rev       Date:  2017-08-29

7.  Synergistic Action of Actinoporin Isoforms from the Same Sea Anemone Species Assembled into Functionally Active Heteropores.

Authors:  Esperanza Rivera-de-Torre; Sara García-Linares; Jorge Alegre-Cebollada; Javier Lacadena; José G Gavilanes; Álvaro Martínez-Del-Pozo
Journal:  J Biol Chem       Date:  2016-04-27       Impact factor: 5.157

8.  Inactivation of the pore-forming toxin Sticholysin I by peroxynitrite: protection by cys groups incorporated in the toxin.

Authors:  L León; E A Lissi; G Celedón; G Gonzalez; F Pazos; C Alvarez; M E Lanio
Journal:  Protein J       Date:  2014-10       Impact factor: 2.371

9.  Mutagenesis and functional analysis of the pore-forming toxin HALT-1 from Hydra magnipapillata.

Authors:  Yvonne Jing Mei Liew; Wai Tuck Soh; William Febry Jiemy; Jung Shan Hwang
Journal:  Toxins (Basel)       Date:  2015-02-03       Impact factor: 4.546

10.  Evolution of the Cytolytic Pore-Forming Proteins (Actinoporins) in Sea Anemones.

Authors:  Jason Macrander; Marymegan Daly
Journal:  Toxins (Basel)       Date:  2016-12-08       Impact factor: 4.546

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