Your browser doesn't support javascript.
loading
Montrer: 20 | 50 | 100
Résultats 1 - 2 de 2
Filtrer
Plus de filtres










Base de données
Gamme d'année
1.
Nat Microbiol ; 9(8): 2051-2072, 2024 Aug.
Article de Anglais | MEDLINE | ID: mdl-39075233

RÉSUMÉ

Delivering macromolecules across biological barriers such as the blood-brain barrier limits their application in vivo. Previous work has demonstrated that Toxoplasma gondii, a parasite that naturally travels from the human gut to the central nervous system (CNS), can deliver proteins to host cells. Here we engineered T. gondii's endogenous secretion systems, the rhoptries and dense granules, to deliver multiple large (>100 kDa) therapeutic proteins into neurons via translational fusions to toxofilin and GRA16. We demonstrate delivery in cultured cells, brain organoids and in vivo, and probe protein activity using imaging, pull-down assays, scRNA-seq and fluorescent reporters. We demonstrate robust delivery after intraperitoneal administration in mice and characterize 3D distribution throughout the brain. As proof of concept, we demonstrate GRA16-mediated brain delivery of the MeCP2 protein, a putative therapeutic target for Rett syndrome. By characterizing the potential and current limitations of the system, we aim to guide future improvements that will be required for broader application.


Sujet(s)
Encéphale , Neurones , Protéines de protozoaire , Toxoplasma , Toxoplasma/génétique , Toxoplasma/métabolisme , Animaux , Neurones/métabolisme , Neurones/parasitologie , Souris , Humains , Encéphale/métabolisme , Encéphale/parasitologie , Protéines de protozoaire/métabolisme , Protéines de protozoaire/génétique , Protéine-2 de liaison au CpG méthylé/génétique , Protéine-2 de liaison au CpG méthylé/métabolisme , Systèmes de délivrance de médicaments
2.
PLoS Comput Biol ; 17(8): e1009256, 2021 08.
Article de Anglais | MEDLINE | ID: mdl-34383743

RÉSUMÉ

Metazoan core promoters, which direct the initiation of transcription by RNA polymerase II (Pol II), may contain short sequence motifs termed core promoter elements/motifs (e.g. the TATA box, initiator (Inr) and downstream core promoter element (DPE)), which recruit Pol II via the general transcription machinery. The DPE was discovered and extensively characterized in Drosophila, where it is strictly dependent on both the presence of an Inr and the precise spacing from it. Since the Drosophila DPE is recognized by the human transcription machinery, it is most likely that some human promoters contain a downstream element that is similar, though not necessarily identical, to the Drosophila DPE. However, only a couple of human promoters were shown to contain a functional DPE, and attempts to computationally detect human DPE-containing promoters have mostly been unsuccessful. Using a newly-designed motif discovery strategy based on Expectation-Maximization probabilistic partitioning algorithms, we discovered preferred downstream positions (PDP) in human promoters that resemble the Drosophila DPE. Available chromatin accessibility footprints revealed that Drosophila and human Inr+DPE promoter classes are not only highly structured, but also similar to each other, particularly in the proximal downstream region. Clustering of the corresponding sequence motifs using a neighbor-joining algorithm strongly suggests that canonical Inr+DPE promoters could be common to metazoan species. Using reporter assays we demonstrate the contribution of the identified downstream positions to the function of multiple human promoters. Furthermore, we show that alteration of the spacing between the Inr and PDP by two nucleotides results in reduced promoter activity, suggesting a spacing dependency of the newly discovered human PDP on the Inr. Taken together, our strategy identified novel functional downstream positions within human core promoters, supporting the existence of DPE-like motifs in human promoters.


Sujet(s)
Génome humain , Régions promotrices (génétique) , Algorithmes , Animaux , Séquence nucléotidique , Biologie informatique , Drosophila melanogaster/génétique , Drosophila melanogaster/métabolisme , Régulation de l'expression des gènes , Cellules HEK293 , Humains , Modèles génétiques , Modèles statistiques , RNA polymerase II/métabolisme , Spécificité d'espèce , Boite TATA , Transcription génétique
SÉLECTION CITATIONS
DÉTAIL DE RECHERCHE