ArticlePloS one2013
Regulation of Trypanosoma brucei Total and Polysomal mRNA during Development within Its Mammalian Host.
Article in PloS one, 2013. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 28 papers.
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Who cites it
28 citing papers in PubMed.
- Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites.PLoS pathogens · 2024Article
- Slow growing behavior in African trypanosomes during adipose tissue colonization.Nature communications · 2022Article
- A long noncoding RNA promotes parasite differentiation in African trypanosomes.Science advances · 2022Article
- Single-cell transcriptomic analysis of bloodstream Trypanosoma brucei reconstructs cell cycle progression and developmental quorum sensing.Nature communications · 2021Article
- An Alba-domain protein required for proteome remodelling during trypanosome differentiation and host transition.PLoS pathogens · 2021Article
- The phosphoinositide regulatory network in Trypanosoma brucei: Implications for cell-wide regulation in eukaryotes.PLoS neglected tropical diseases · 2020Review
- A post-transcriptional respiratome regulon in trypanosomes.Nucleic acids research · 2019Article
- The mRNA-bound Proteome ofMolecular & cellular proteomics : MCP · 2019Article
- Trypanosoma brucei EIF4E2 cap-binding protein binds a homolog of the histone-mRNA stem-loop-binding protein.Current genetics · 2018Article
- Expression profiling of Trypanosoma congolense genes during development in the tsetse fly vector Glossina morsitans morsitans.Parasites & vectors · 2018Article
- Inositol polyphosphate multikinase regulation of Trypanosoma brucei life stage development.Molecular biology of the cell · 2018Article
- Polysome Profiling in Leishmania, Human Cells and Mouse Testis.Journal of visualized experiments : JoVE · 2018Article
- Gene expression to mitochondrial metabolism: Variability among cultured Trypanosoma cruzi strains.PloS one · 2018Article
- The proteome and transcriptome of the infectious metacyclic form of Trypanosoma brucei define quiescent cells primed for mammalian invasion.Molecular microbiology · 2017Article
- The Cytological Events and Molecular Control of Life Cycle Development of Trypanosoma brucei in the Mammalian Bloodstream.Pathogens (Basel, Switzerland) · 2017Review
- Adipose Tissue: A Safe Haven for Parasites?Trends in parasitology · 2017Review
- Illuminating Parasite Protein Production by Ribosome Profiling.Trends in parasitology · 2016Review
- Transcriptomes of newly-isolated Trypanosoma brucei rhodesiense reveal hundreds of mRNAs that are co-regulated with stumpy-form markers.BMC genomics · 2015Article
- Novel insights into RNP granules by employing the trypanosome's microtubule skeleton as a molecular sieve.Nucleic acids research · 2015Article
- NMD3 regulates both mRNA and rRNA nuclear export in African trypanosomes via an XPOI-linked pathway.Nucleic acids research · 2015Article
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Authors and funding
9 authors.
Funding
Abstract
The gene expression of Trypanosoma brucei has been examined extensively in the blood of mammalian hosts and in forms found in the midgut of its arthropod vector, the tsetse fly. However, trypanosomes also undergo development within the mammalian bloodstream as they progress from morphologically 'slender forms' to transmissible 'stumpy forms' through morphological intermediates. This transition is temporally progressive within the first wave of parasitaemia such that gene expression can be monitored in relatively pure slender and stumpy populations as well as during the progression between these extremes. The development also represents the progression of cells from translationally active forms adapted for proliferation in the host to translationally quiescent forms, adapted for transmission. We have used metabolic labelling to quantitate translational activity in slender forms, stumpy forms and in forms undergoing early differentiation to procyclic forms in vitro. Thereafter we have examined the cohort of total mRNAs that are enriched throughout development in the mammalian bloodstream (slender, intermediate and stumpy forms), irrespective of strain, revealing those that exhibit consistent developmental regulation rather than sample specific changes. Transcripts that cosediment with polysomes in stumpy forms and slender forms have also been enriched to identify transcripts that escape translational repression prior to transmission. Combined, the expression and polysomal association of transcripts as trypanosomes undergo development in the mammalian bloodstream have been defined, providing a resource for trypanosome researchers. This facilitates the identification of those that undergo developmental regulation in the bloodstream and therefore those likely to have a role in the survival and capacity for transmission of stumpy forms.
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