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Espada, C. R.

Publications and source records attributed to Espada, C. R..

2 recordsLinked to original sources

A short noncoding RNA modulates gene expression and affects stress response and parasite differentiation in Leishmania braziliensis

The protozoan parasite Leishmania spp. is a causative agent of leishmaniasis, a disease that affects millions of people in more than 80 countries worldwide. Apart from its medical relevance, this organism has a genetic organization that is unique among eukaryotes. Studies of the mechanisms regulating gene expression in Leishmania led us to investigate noncoding RNAs (ncRNAs) as regulatory elements. We previously identified differentially expressed (DE) ncRNAs in Leishmania braziliensis with potential roles in the parasite biology and development. Herein, we present a functional analysis of one such DE ncRNA, the 147-nucleotide-long transcript ncRNA97, which is preferentially expressed in amastigotes, the replicative form within mammalian phagocytes. By RT-qPCR the ncRNA97 was detected in greater quantities in the nucleus under physiological conditions and in the cytoplasm under nutritional stress. Interestingly, the transcript is protected at the 5 end but is not processed by the canonical trypanosomatid trans-splicing mechanism, according to the RNA circularization assay. ncRNA97 knockout (KO) and addback (AB) transfectants were generated and subjected to phenotypic analysis, which revealed that ncRNA97 impairs the starvation response and differentiation to the infective form. Comparative transcriptomics of ncRNA97KO and parental cells revealed that transcripts encoding amastigote-specific proteins were affected. This pioneering work demonstrates that ncRNAs contribute to the developmental regulatory mechanisms of Leishmania.

molecular biology↗

Leishmania Ribosomal Protein (RP) paralogous genes compensate each others expression maintaining protein native levels

In the protozoan parasite Leishmania, most of the genes encoding for ribosomal proteins (RPs) are present as two or more copies in the genome, their untranslated regions (UTRs) are predominantly divergent, and might be associated with a distinct regulation of the paralogous genes expression. Here, we investigated the expression profiles of two RPs (S16 and L13a) encoded by duplicated genes in Leishmania major. The genes encoding for S16 protein have identical CDSs and divergent UTRs while the L13a CDSs diverge in two amino acids with divergent UTRs. Using CRISPR/Cas9 genomic editing system, we generated knockout ({Delta}) and tagged transfectants for each paralog of L13a and S16. Combining tagged and {Delta} cell lines we show that the expression of both RPS16 and RPL13a isoforms differ throughout the parasite development with one of the isoforms being always more abundant than its respective copy. Additionally, compensatory expression was observed for each paralog when one of the isoforms was deleted, evidencing functional conservation of these proteins. Such phenomenon is related to post-translational processes, since the compensation happened at the protein levels, with no alterations observed at the transcript levels. Ribosomal profiles for RPL13a point out a standard behavior for these paralogues as already reported for other RPs in trypanosomatids, showing its interaction with heavy RNA-protein complexes. The identification of sets of proteins binding specifically to the 3UTRs of either the high or less abundant transcripts suggests a possible role of these proteins to differently control the levels of expression of these RP genes. In addition, conserved cis-elements were identified in the 3UTRs of RPS16 or RPL13a; among these, exclusive cis-elements for the more or for the less expressed transcripts were identified.

molecular biology↗