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Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein

In most organisms, the heat-shock response involves increased heat-shock gene transcription. In Kinetoplastid protists, however, virtually all control of gene expression is post-transcriptional. Correspondingly, Trypanosoma brucei heat-shock protein 70 (HSP70) synthesis after heat shock depends on r...

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Autores principales: Droll, Dorothea, Minia, Igor, Fadda, Abeer, Singh, Aditi, Stewart, Mhairi, Queiroz, Rafael, Clayton, Christine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3616968/
https://www.ncbi.nlm.nih.gov/pubmed/23592996
http://dx.doi.org/10.1371/journal.ppat.1003286
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author Droll, Dorothea
Minia, Igor
Fadda, Abeer
Singh, Aditi
Stewart, Mhairi
Queiroz, Rafael
Clayton, Christine
author_facet Droll, Dorothea
Minia, Igor
Fadda, Abeer
Singh, Aditi
Stewart, Mhairi
Queiroz, Rafael
Clayton, Christine
author_sort Droll, Dorothea
collection PubMed
description In most organisms, the heat-shock response involves increased heat-shock gene transcription. In Kinetoplastid protists, however, virtually all control of gene expression is post-transcriptional. Correspondingly, Trypanosoma brucei heat-shock protein 70 (HSP70) synthesis after heat shock depends on regulation of HSP70 mRNA turnover. We here show that the T. brucei CCCH zinc finger protein ZC3H11 is a post-transcriptional regulator of trypanosome chaperone mRNAs. ZC3H11 is essential in bloodstream-form trypanosomes and for recovery of insect-form trypanosomes from heat shock. ZC3H11 binds to mRNAs encoding heat-shock protein homologues, with clear specificity for the subset of trypanosome chaperones that is required for protein refolding. In procyclic forms, ZC3H11 was required for stabilisation of target chaperone-encoding mRNAs after heat shock, and the HSP70 mRNA was also decreased upon ZC3H11 depletion in bloodstream forms. Many mRNAs bound to ZC3H11 have a consensus AUU repeat motif in the 3′-untranslated region. ZC3H11 bound preferentially to AUU repeats in vitro, and ZC3H11 regulation of HSP70 mRNA in bloodstream forms depended on its AUU repeat region. Tethering of ZC3H11 to a reporter mRNA increased reporter expression, showing that it is capable of actively stabilizing an mRNA. These results show that expression of trypanosome heat-shock genes is controlled by a specific RNA-protein interaction. They also show that heat-shock-induced chaperone expression in procyclic trypanosome enhances parasite survival at elevated temperatures.
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spelling pubmed-36169682013-04-16 Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein Droll, Dorothea Minia, Igor Fadda, Abeer Singh, Aditi Stewart, Mhairi Queiroz, Rafael Clayton, Christine PLoS Pathog Research Article In most organisms, the heat-shock response involves increased heat-shock gene transcription. In Kinetoplastid protists, however, virtually all control of gene expression is post-transcriptional. Correspondingly, Trypanosoma brucei heat-shock protein 70 (HSP70) synthesis after heat shock depends on regulation of HSP70 mRNA turnover. We here show that the T. brucei CCCH zinc finger protein ZC3H11 is a post-transcriptional regulator of trypanosome chaperone mRNAs. ZC3H11 is essential in bloodstream-form trypanosomes and for recovery of insect-form trypanosomes from heat shock. ZC3H11 binds to mRNAs encoding heat-shock protein homologues, with clear specificity for the subset of trypanosome chaperones that is required for protein refolding. In procyclic forms, ZC3H11 was required for stabilisation of target chaperone-encoding mRNAs after heat shock, and the HSP70 mRNA was also decreased upon ZC3H11 depletion in bloodstream forms. Many mRNAs bound to ZC3H11 have a consensus AUU repeat motif in the 3′-untranslated region. ZC3H11 bound preferentially to AUU repeats in vitro, and ZC3H11 regulation of HSP70 mRNA in bloodstream forms depended on its AUU repeat region. Tethering of ZC3H11 to a reporter mRNA increased reporter expression, showing that it is capable of actively stabilizing an mRNA. These results show that expression of trypanosome heat-shock genes is controlled by a specific RNA-protein interaction. They also show that heat-shock-induced chaperone expression in procyclic trypanosome enhances parasite survival at elevated temperatures. Public Library of Science 2013-04-04 /pmc/articles/PMC3616968/ /pubmed/23592996 http://dx.doi.org/10.1371/journal.ppat.1003286 Text en © 2013 Droll et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Droll, Dorothea
Minia, Igor
Fadda, Abeer
Singh, Aditi
Stewart, Mhairi
Queiroz, Rafael
Clayton, Christine
Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein
title Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein
title_full Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein
title_fullStr Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein
title_full_unstemmed Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein
title_short Post-Transcriptional Regulation of the Trypanosome Heat Shock Response by a Zinc Finger Protein
title_sort post-transcriptional regulation of the trypanosome heat shock response by a zinc finger protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3616968/
https://www.ncbi.nlm.nih.gov/pubmed/23592996
http://dx.doi.org/10.1371/journal.ppat.1003286
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