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1.
Exp Parasitol ; 99(1): 7-16, 2001 Sep.
Article in English | MEDLINE | ID: mdl-11708829

ABSTRACT

The development of the representation of differential expression method has lead to the cloning of Trypanosoma cruzi stage-specific genes. We used this method to characterize a multicopy gene family differentially expressed during metacyclogenesis. The genomic and cDNA clones sequenced encoded three short cysteine-rich polypeptides, of two types, with predicted molecular masses of 7.1, 10.4, and 10.8 kDa. We searched GenBank for similar sequences and found that the sequences of these clones were similar to that encoding the wheat germ agglutinin protein. The region of similarity corresponds to the chitin-binding domain, with eight similarly positioned half-cysteines and conserved aromatic residues involved in chitin recognition. Multiple copies of the genes of this family are present on a high- molecular-mass chromosome. We studied the expression of genes of this family during metacyclogenesis by determining messenger RNA (mRNA) levels. The mRNAs for the members of this gene family were present in the total RNA fraction but were mobilized to the polysomal fraction of adhered (differentiating) epimastigotes during metacyclogenesis, with a peak of accumulation at 24 of differentiation. Polyclonal antisera were raised against a recombinant protein and a synthetic peptide. The specific sera obtained detected 7- and 11-kDa proteins in T. cruzi total protein extracts. The 11-kDa protein was present in similar amounts in the various cell populations, whereas the 7-kDa protein displayed differential synthesis during metacyclogenesis, with maximal levels in 24-h-adhered (differentiating) epimastigotes.


Subject(s)
Carrier Proteins/genetics , Multigene Family/physiology , Protozoan Proteins/genetics , Trypanosoma cruzi/genetics , Amino Acid Sequence , Animals , Blotting, Northern , Blotting, Southern , Blotting, Western , Carrier Proteins/biosynthesis , Carrier Proteins/chemistry , Cell Adhesion , Chitin/metabolism , Cloning, Molecular , DNA, Protozoan/chemistry , Gene Expression , Genome, Protozoan , Immune Sera/chemistry , Molecular Sequence Data , Protein Structure, Tertiary , Protozoan Proteins/biosynthesis , Protozoan Proteins/chemistry , RNA, Protozoan/analysis , Rabbits , Trypanosoma cruzi/chemistry , Trypanosoma cruzi/physiology
2.
Mem Inst Oswaldo Cruz ; 94 Suppl 1: 165-8, 1999.
Article in English | MEDLINE | ID: mdl-10677707

ABSTRACT

The transformation of epimastigotes into metacyclic trypomastigotes involves changes in the pattern of expressed genes, resulting in important morphological and functional differences between these developmental forms of Trypanosoma cruzi. In order to identify and characterize genes involved in triggering the metacyclogenesis process and in conferring to metacyclic trypomastigotes their stage specific biological properties, we have developed a method allowing the isolation of genes specifically expressed when comparing two close related cell populations (representation of differential expression or RDE). The method is based on the PCR amplification of gene sequences selected by hybridizing and subtracting the populations in such a way that after some cycles of hybridization-amplification genes specific to a given population are highly enriched. The use of this method in the analysis of differential gene expression during T. cruzi metacyclogenesis (6 hr and 24 hr of differentiation and metacyclic trypomastigotes) resulted in the isolation of several clones from each time point. Northern blot analysis showed that some genes are transiently expressed (6 hr and 24 hr differentiating cells), while others are present in differentiating cells and in metacyclic trypomastigotes. Nucleotide sequencing of six clones characterized so far showed that they do not display any homology to gene sequences available in the GeneBank.


Subject(s)
Gene Expression Regulation, Developmental , Trypanosoma cruzi/growth & development , Trypanosoma cruzi/genetics , Animals , Blotting, Northern , Life Cycle Stages/genetics , Nucleic Acid Amplification Techniques , Polymerase Chain Reaction
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