Active transcription and ultrastructural changes during Trypanosoma cruzi metacyclogenesis

The differentiation of proliferating epimastigote forms of Trypanosoma cruzi , the protozoan parasite that causes Chagas disease, into the infective and non-proliferating metacyclic forms can be reproduced in the laboratory by incubating the cells in a chemically-defined medium that mimics the urine...

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Detalhes bibliográficos
Autores: Ferreira, Ludmila R.p. [UNIFESP], Dossin, Fernando De M. [UNIFESP], Ramos, Thiago Cesar Prata [UNIFESP], Freymüller-Haapalainen, Edna [UNIFESP], Schenkman, Sergio [UNIFESP]
Tipo de documento: artigo
Estado:Versão publicada
Data de publicação:2008
País:Brasil
Recursos:Universidade Federal de São Paulo (UNIFESP)
Repositório:Repositório Institucional da UNIFESP
Idioma:inglês
OAI Identifier:oai:repositorio.unifesp.br:11600/4271
Acesso em linha:http://dx.doi.org/10.1590/S0001-37652008000100011
http://repositorio.unifesp.br/handle/11600/4271
Access Level:Acceso aberto
Palavra-chave:Trypanosoma cruzi
metacyclogenesis
transcription
RNA polymerase II
metaciclogênese
transcrição
RNA polimerase II
Descrição
Resumo:The differentiation of proliferating epimastigote forms of Trypanosoma cruzi , the protozoan parasite that causes Chagas disease, into the infective and non-proliferating metacyclic forms can be reproduced in the laboratory by incubating the cells in a chemically-defined medium that mimics the urine of the insect vector. Epimastigotes have a spherical nucleus, a flagellum protruding from the middle of the protozoan cell, and a disk-shaped kinetoplast - an organelle that corresponds to the mitochondrial DNA. Metacyclic trypomastigotes have an elongated shape with the flagellum protruding from the posterior portion of the cell and associated with a spherical kinetoplast. Here we describe the morphological events of this transformation and characterize a novel intermediate stage by three-dimensional reconstruction of electron microscope serial sections. This new intermediate stage is characterized by a kinetoplast compressing an already elongated nucleus, indicating that metacyclogenesis involves active movements of the flagellar structure relative to the cell body. As transcription occurs more intensely in proliferating epimastigotes than in metacyclics, we also examined the presence of RNA polymerase II and measured transcriptional activity during the differentiation process. Both the presence of the enzyme and transcriptional activity remain unchanged during all steps of metacyclogenesis. RNA polymerase II levels and transcriptional activity only decrease after metacyclics are formed. We suggest that transcription is required during the epimastigote-to-metacyclic trypomastigote differentiation process, until the kinetoplast and flagellum reach the posterior position of the parasites in the infective form.