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1.
Nucleic Acids Res ; 51(15): 8133-8149, 2023 08 25.
Article de Anglais | MEDLINE | ID: mdl-37462076

RÉSUMÉ

Fungal pathogens threaten ecosystems and human health. Understanding the molecular basis of their virulence is key to develop new treatment strategies. Here, we characterize NCS2*, a point mutation identified in a clinical baker's yeast isolate. Ncs2 is essential for 2-thiolation of tRNA and the NCS2* mutation leads to increased thiolation at body temperature. NCS2* yeast exhibits enhanced fitness when grown at elevated temperatures or when exposed to oxidative stress, inhibition of nutrient signalling, and cell-wall stress. Importantly, Ncs2* alters the interaction and stability of the thiolase complex likely mediated by nucleotide binding. The absence of 2-thiolation abrogates the in vivo virulence of pathogenic baker's yeast in infected mice. Finally, hypomodification triggers changes in colony morphology and hyphae formation in the common commensal pathogen Candida albicans resulting in decreased virulence in a human cell culture model. These findings demonstrate that 2-thiolation of tRNA acts as a key mediator of fungal virulence and reveal new mechanistic insights into the function of the highly conserved tRNA-thiolase complex.


Sujet(s)
ARN de transfert , Saccharomyces cerevisiae , Animaux , Humains , Souris , Candida albicans/métabolisme , Écosystème , Protéines fongiques/métabolisme , ARN de transfert/génétique , ARN de transfert/métabolisme , Saccharomyces cerevisiae/métabolisme , Saccharomyces cerevisiae/pathogénicité , Soufre/métabolisme , Virulence/génétique
2.
EMBO J ; 38(23): e101323, 2019 12 02.
Article de Anglais | MEDLINE | ID: mdl-31556460

RÉSUMÉ

Estrogen receptor alpha (ERα) activity is associated with increased cancer cell proliferation. Studies aiming to understand the impact of ERα on cancer-associated phenotypes have largely been limited to its transcriptional activity. Herein, we demonstrate that ERα coordinates its transcriptional output with selective modulation of mRNA translation. Importantly, translational perturbations caused by depletion of ERα largely manifest as "translational offsetting" of the transcriptome, whereby amounts of translated mRNAs and corresponding protein levels are maintained constant despite changes in mRNA abundance. Transcripts whose levels, but not polysome association, are reduced following ERα depletion lack features which limit translation efficiency including structured 5'UTRs and miRNA target sites. In contrast, mRNAs induced upon ERα depletion whose polysome association remains unaltered are enriched in codons requiring U34-modified tRNAs for efficient decoding. Consistently, ERα regulates levels of U34-modifying enzymes and thereby controls levels of U34-modified tRNAs. These findings unravel a hitherto unprecedented mechanism of ERα-dependent orchestration of transcriptional and translational programs that may be a pervasive mechanism of proteome maintenance in hormone-dependent cancers.


Sujet(s)
Tumeurs du sein/génétique , Récepteur alpha des oestrogènes/génétique , Régulation de l'expression des gènes tumoraux , Polyribosomes/génétique , Biosynthèse des protéines , ARN messager/génétique , Tumeurs du sein/métabolisme , Tumeurs du sein/anatomopathologie , Prolifération cellulaire , Récepteur alpha des oestrogènes/métabolisme , Femelle , Humains , Cellules MCF-7 , Polyribosomes/métabolisme , ARN messager/métabolisme , Transduction du signal , Activation de la transcription
3.
Angew Chem Int Ed Engl ; 58(28): 9565-9569, 2019 07 08.
Article de Anglais | MEDLINE | ID: mdl-30892798

RÉSUMÉ

Accurate quantification of the copy numbers of noncoding RNA has recently emerged as an urgent problem, with impact on fields such as RNA modification research, tissue differentiation, and others. Herein, we present a hybridization-based approach that uses microscale thermophoresis (MST) as a very fast and highly precise readout to quantify, for example, single tRNA species with a turnaround time of about one hour. We developed MST to quantify the effect of tRNA toxins and of heat stress and RNA modification on single tRNA species. A comparative analysis also revealed significant differences to RNA-Seq-based quantification approaches, strongly suggesting a bias due to tRNA modifications in the latter. Further applications include the quantification of rRNA as well as of polyA levels in cellular RNA.


Sujet(s)
ARN non traduit/composition chimique , Fluorescence
4.
Nat Genet ; 49(10): 1529-1538, 2017 Oct.
Article de Anglais | MEDLINE | ID: mdl-28805828

RÉSUMÉ

Galloway-Mowat syndrome (GAMOS) is an autosomal-recessive disease characterized by the combination of early-onset nephrotic syndrome (SRNS) and microcephaly with brain anomalies. Here we identified recessive mutations in OSGEP, TP53RK, TPRKB, and LAGE3, genes encoding the four subunits of the KEOPS complex, in 37 individuals from 32 families with GAMOS. CRISPR-Cas9 knockout in zebrafish and mice recapitulated the human phenotype of primary microcephaly and resulted in early lethality. Knockdown of OSGEP, TP53RK, or TPRKB inhibited cell proliferation, which human mutations did not rescue. Furthermore, knockdown of these genes impaired protein translation, caused endoplasmic reticulum stress, activated DNA-damage-response signaling, and ultimately induced apoptosis. Knockdown of OSGEP or TP53RK induced defects in the actin cytoskeleton and decreased the migration rate of human podocytes, an established intermediate phenotype of SRNS. We thus identified four new monogenic causes of GAMOS, describe a link between KEOPS function and human disease, and delineate potential pathogenic mechanisms.


Sujet(s)
Hernie hiatale/génétique , Microcéphalie/génétique , Complexes multiprotéiques/génétique , Mutation , Néphrose/génétique , Animaux , Apoptose/génétique , Systèmes CRISPR-Cas , Protéines de transport/génétique , Mouvement cellulaire , Cytosquelette/ultrastructure , Réparation de l'ADN/génétique , Stress du réticulum endoplasmique/génétique , Techniques de knock-out de gènes , Humains , Protéines et peptides de signalisation intracellulaire/déficit , Protéines et peptides de signalisation intracellulaire/génétique , Metalloendopeptidases/déficit , Metalloendopeptidases/génétique , Souris , Modèles moléculaires , Syndrome néphrotique/génétique , Syndrome néphrotique/anatomopathologie , Podocytes/métabolisme , Podocytes/ultrastructure , Conformation des protéines , Protein-Serine-Threonine Kinases/déficit , Protein-Serine-Threonine Kinases/génétique , Maturation post-transcriptionnelle des ARN/génétique , ARN de transfert/métabolisme , Homéostasie des télomères/génétique , Danio zébré , Protéines de poisson-zèbre/déficit , Protéines de poisson-zèbre/génétique
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