Post-transcriptional regulation of Leishmania fitness gain
Piel, L.; Rajan, K. S.; Bussotti, G.; Varet, H.; Legendre, R.; Proux, C.; Douche, T.; Giai Gianetto, Q.; Chaze, T.; Vojtkova, B.; Gordon-Bar, N.; Doniger, T.; Cohen-Chalamish, S.; Rengaraj, P.; Besse, C.; Boland, A.; Sadlova, J.; Deleuze, J.-F.; Matondo, M.; Unger, R.; Volf, P.; Michaeli, S.; Pescher, P.; Spaeth, G. F.
10.1101/2021.03.22.436378 bioRxivShow abstract
The protozoan parasite Leishmania donovani causes fatal human visceral leishmaniasis in absence of treatment. Genome instability has been recognized as a driver in Leishmania fitness gain in response to environmental change or chemotherapy. How genome instability generates beneficial phenotypes despite potential deleterious gene dosage effects is unknown. Here we address this important open question applying experimental evolution and integrative systems approaches on parasites adapting to in vitro culture. Phenotypic analyses of parasites from early and late stages of culture adaptation revealed an important fitness tradeoff, with selection for accelerated growth in promastigote culture (fitness gain) impairing infectivity (fitness costs). Comparative genomics, transcriptomics and proteomics analyses revealed a complex regulatory network driving parasite fitness, with genome instability causing highly reproducible, gene dosage-dependent changes in protein abundance linked to post-transcriptional regulation. These in turn were associated with a gene dosage-independent reduction in abundance of flagellar transcripts and a coordinated increase in abundance of coding and non-coding RNAs implicated in ribosomal biogenesis and protein translation. We correlated differential expression of small nucleolar RNAs (snoRNAs) with changes in rRNA modification, providing first evidence that Leishmania fitness gain in culture may be controlled by post-transcriptional and epitranscriptomic regulation. Our findings propose a novel model for Leishmania fitness gain in culture, where differential regulation of mRNA stability and the generation of fitness-adapted ribosomes may potentially filter deleterious from beneficial gene dosage effects and provide proteomic robustness to genetically heterogenous, adapting parasite populations. This model challenges the current, genome-centric approach to Leishmania epidemiology and identifies the Leishmania transcriptome and non-coding small RNome as potential novel sources for the discovery of biomarkers that may be associated with parasite phenotypic adaptation in clinical settings.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- An Essential Adaptor for Apicoplast Fission and Inheritance in Malaria Parasites 95%
- TransLeish: Identification of membrane transporters essential for survival of intracellular Leishmania parasites in a systematic gene deletion screen 95%
- High-Resolution Proteomics Unveils Salivary Gland Disruption and Saliva-Hemolymph Protein Exchange in Plasmodium-Infected Mosquitoes 95%
Similar papers in this journal
- PfMORC protein regulates chromatin accessibility and transcriptional repression in the human malaria parasite, Plasmodium falciparum 96%
- RNA polymerase III is involved in regulating Plasmodium falciparum virulence 95%
- An atypical DYRK kinase connects quorum-sensing with posttranscriptional gene regulation in Trypanosoma brucei 95%
Similar papers in this journal
- Essential role of the Conserved Oligomeric Golgi complex in Toxoplasma gondii 95%
- The heptaprenyl diphosphate synthase (Coq1) is the target of a lipophilic bisphosphonate that protects mice against Toxoplasma gondii infection 95%
- Genomic and phenotypic characterization of experimentally selected resistant Leishmania donovani reveals a role for dynamin-1 like protein in the mechanism of resistance to a novel anti-leishmanial compound 95%
Similar papers in this journal
- The genome of the zoonotic malaria parasite Plasmodium simium reveals adaptations to host-switching 95%
- Complete representation of a tapeworm genome reveals chromosomes capped by centromeres, necessitating a dual role in segregation and protection 94%
- A chromosome-level assembly of the cat flea genome uncovers rampant gene duplication and genome size plasticity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.