• JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
  • JoomlaWorks Simple Image Rotator
 
  Bookmark and Share
 
 
Doctoral Thesis
DOI
https://doi.org/10.11606/T.42.2000.tde-28032001-160342
Document
Author
Full name
Pedro Ismael da Silva Junior
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2000
Supervisor
Committee
Daffre, Sirlei (President)
Almeida, Igor Correia de
Ho, Paulo Lee
Katzin, Alejandro Miguel
Miranda, Antonio de
Title in Portuguese
Sistema imune em aracnídeos: estrutura química e atividade biológica de peptídeos antimicrobianos da hemolinfa da aranha Acanthoscurria gomesiana.
Keywords in Portuguese
acanthoscurria gomesiana
aranha migalomorfa
hemolinfa
peptídeo antiparasítico
peptídeos antimicrobianos
resposta imune
Abstract in Portuguese
Peptídeos antimicrobianos são importantes componentes do sistema imune de vertebrados e invertebrados. Neste trabalho purificamos e caracterizamos quatro moléculas presentes na hemolinfa da aranha Acanthoscurria gomesiana: 1) theraphosinina, peptídeo de 4052,5 Da purificado do plasma, apresenta atividade anti-Micrococcus luteus e não apresenta similaridade com outros peptídeos. A partir dos hemócitos foram purificados: 2) mygalomorphina, um peptídeo de 415,9 Da com atividade anti-Escherichia coli. Sua atividade está relacionada à produção de H2O2 pois é inibida por catalase; 3) gomesina, um peptídeo de 2270,4 Da que apresenta alta similaridade com taquiplesinas e protegrinas. Apresenta amplo espectro de atividade contra bactérias, leveduras, fungos e Leishmania; 4) acanthoscurrina, um peptídeo rico em glicina, que apresenta duas isoformas com 10132,4 e 10249,1Da. Este peptídeo tem atividade contra E. coli e Candida albicans e apresenta grande similaridade com proteinas antifúngicas de insetos e também com proteínas relacionadas com a defesa em plantas.
Title in English
Immune system in aracnids: chemical structure and biological activity of antimicrobials peptides from Acanthoscurria gomesiana.
Keywords in English
antimicrobial peptides
antiparasitic peptide
immune response
memolymph
mygalomorph spider
Abstract in English
Antimicrobial peptides are important components of the vertebrates and invertebrates immune system. In this work we purified and characterized four molecules from Acanthoscurria gomesiana spider hemolimph: 1) theraphosinin, a 4,052.5 Da peptide purified from plasma with anti-Micrococcus luteus activity. It does not show similarity with any other invertebrate immune peptides. From the hemocytes three peptides have been purified: 2) mygalomorphin, a peptide with 415.9 Da, which shows anti-Escherichia coli activity. This activity is inhibited by catalase, therefore it may be, related to the H2O2 production; 3) gomesin, a peptide with 2,270.4 Da, that shows high similarity with tachyplesins and protegrins. It have large activity spectrum against bacteria, yeast, fungi and Leishmania; 4) acanthoscurrin, a glycine-rich peptide that shows two isoforms of 10,132.4 and 10,249.1 Da. This peptide has activity against E. coli and Candida albicans and shows high similarity with antifungal proteins of insects and plants defense proteins.
 
WARNING - Viewing this document is conditioned on your acceptance of the following terms of use:
This document is only for private use for research and teaching activities. Reproduction for commercial use is forbidden. This rights cover the whole data about this document as well as its contents. Any uses or copies of this document in whole or in part must include the author's name.
Pedro.pdf (1.73 Mbytes)
Publishing Date
2001-04-02
 
WARNING: Learn what derived works are clicking here.
All rights of the thesis/dissertation are from the authors
CeTI-SC/STI
Digital Library of Theses and Dissertations of USP. Copyright © 2001-2024. All rights reserved.