Your browser doesn't support javascript.
loading
: 20 | 50 | 100
1 - 4 de 4
1.
Cell Rep ; 29(11): 3605-3619.e10, 2019 12 10.
Article En | MEDLINE | ID: mdl-31825839

Ribosome assembly occurs mainly in the nucleolus, yet recent studies have revealed robust enrichment and translation of mRNAs encoding many ribosomal proteins (RPs) in axons, far away from neuronal cell bodies. Here, we report a physical and functional interaction between locally synthesized RPs and ribosomes in the axon. We show that axonal RP translation is regulated through a sequence motif, CUIC, that forms an RNA-loop structure in the region immediately upstream of the initiation codon. Using imaging and subcellular proteomics techniques, we show that RPs synthesized in axons join axonal ribosomes in a nucleolus-independent fashion. Inhibition of axonal CUIC-regulated RP translation decreases local translation activity and reduces axon branching in the developing brain, revealing the physiological relevance of axonal RP synthesis in vivo. These results suggest that axonal translation supplies cytoplasmic RPs to maintain/modify local ribosomal function far from the nucleolus in neurons.


Axons/metabolism , Neurogenesis , Ribosomal Proteins/genetics , Ribosomes/metabolism , Animals , Axons/ultrastructure , Brain/cytology , Brain/growth & development , Brain/metabolism , Cells, Cultured , RNA, Messenger/genetics , RNA, Messenger/metabolism , Regulatory Sequences, Ribonucleic Acid , Ribosomal Proteins/metabolism , Ribosomes/genetics , Xenopus laevis
2.
Biochim Biophys Acta Gen Subj ; 1862(12): 2750-2763, 2018 12.
Article En | MEDLINE | ID: mdl-30251664

BACKGROUND: Trypanosoma cruzi, the causative agent of Chagas' disease is unable to synthesise its own purines and relies on salvage from the host. In other protozoa, purine uptake has been shown to be mediated by Equilibrative Nucleoside Transporters (ENTs). METHODS: To investigate the functionality of T. cruzi-encoded ENT transporters, its four putative ENT genes (TcrNB1, TcrNB2, TcrNT1 and TcrNT2) were cloned and expressed in genetically adapted Trypanosoma brucei procyclic cells from which the nucleobase transporter locus was deleted. RESULTS: TcrNB1 displayed very high affinity for hypoxanthine (Km 93.8 ±â€¯4.7 nM for) and guanine, and moderate affinity for adenine. TcrNT1 was found to be a high-affinity guanosine/inosine transporter (inosine Km is 1.0 ±â€¯0.03 µM; guanosine Ki is 0.92 ±â€¯0.2 µM). TcrNT2 encoded a high-affinity thymidine transporter (Km = 223.5 ±â€¯7.1 nM) with a clear preference for 2'-deoxypyrimidines. TcrNB2, whose activity could not be determined in our system, could be a low-affinity purine nucleobase transporter, given its sequence and predicted structural similarities to Leishmania major NT4. All 4 transporter genes were highly expressed in the amastigote forms, with much lower expression in the non-dividing stages. CONCLUSIONS: The data appear to show that, surprisingly, T. cruzi has a preference for oxopurines over aminopurines and efficiently transports 2'-deoxypyrimidines. The T. cruzi ENTs display exceptionally high substrate affinity as an adaptation to their intracellular localisation. GENERAL SIGNIFICANCE: This study reports the first cloning of T. cruzi purine and pyrimidine transporters, including the first gene encoding a pyrimidine-selective protozoan transporter.


Equilibrative Nucleoside Transport Proteins/metabolism , Trypanosoma cruzi/metabolism , Animals , Cloning, Molecular , Equilibrative Nucleoside Transport Proteins/genetics , Genes, Protozoan , Guanine/metabolism , Guanosine/metabolism , Phylogeny , Thymidine/metabolism , Trypanosoma brucei brucei/genetics , Trypanosoma cruzi/genetics
3.
Elife ; 72018 03 15.
Article En | MEDLINE | ID: mdl-29543152

Selective transcription of individual protein coding genes does not occur in trypanosomes and the cellular copy number of each mRNA must be determined post-transcriptionally. Here, we provide evidence that codon choice directs the levels of constitutively expressed mRNAs. First, a novel codon usage metric, the gene expression codon adaptation index (geCAI), was developed that maximised the relationship between codon choice and the measured abundance for a transcriptome. Second, geCAI predictions of mRNA levels were tested using differently coded GFP transgenes and were successful over a 25-fold range, similar to the variation in endogenous mRNAs. Third, translation was necessary for the accelerated mRNA turnover resulting from codon choice. Thus, in trypanosomes, the information determining the levels of most mRNAs resides in the open reading frame and translation is required to access this information.


Codon/genetics , Protein Biosynthesis/genetics , Transcription, Genetic , Trypanosoma/genetics , Open Reading Frames , RNA, Messenger , Transcriptome/genetics
4.
Open Biol ; 7(4)2017 04.
Article En | MEDLINE | ID: mdl-28381627

The fate of an mRNA is determined by its interaction with proteins and small RNAs within dynamic complexes called ribonucleoprotein complexes (mRNPs). In Trypanosoma brucei and related kinetoplastids, responses to internal and external signals are mainly mediated by post-transcriptional processes. Here, we used proximity-dependent biotin identification (BioID) combined with RNA-seq to investigate the changes resulting from ectopic expression of RBP10 and RBP9, two developmentally regulated RNA-binding proteins (RBPs). Both RBPs have reduced expression in insect procyclic forms (PCFs) compared with bloodstream forms (BSFs). Upon overexpression in PCFs, both proteins were recruited to cytoplasmic foci, co-localizing with the processing body marker SCD6. Further, both RBPs altered the transcriptome from a PCF- to a BSF-like pattern. Notably, upon expression of BirA*-RBP9 and BirA*-RBP10, BioID yielded more than 200 high confidence protein interactors (more than 10-fold enriched); 45 (RBP9) and 31 (RBP10) were directly related to mRNA metabolism. This study validates the use of BioID for investigating mRNP components but also illustrates the complexity of mRNP function.


Protozoan Proteins/metabolism , RNA-Binding Proteins/metabolism , Trypanosoma brucei brucei/metabolism , Carrier Proteins/metabolism , Cell Cycle Checkpoints/genetics , Computational Biology/methods , Gene Expression , Protein Binding , Protein Interaction Mapping , Protozoan Proteins/genetics , RNA, Messenger/genetics , RNA, Messenger/metabolism , RNA-Binding Proteins/genetics , Transcriptome , Trypanosoma brucei brucei/genetics
...