dc.creatorBatista, Michel
dc.creatorMarchini, Fabrício Klerynton
dc.creatorCeledon, Paola Alejandra Fiorani
dc.creatorFragoso, Stenio Perdigão
dc.creatorProbst, Christian Macagnan
dc.creatorPreti, Henrique
dc.creatorOzaki, Luiz Shozo
dc.creatorBuck, Gregory A.
dc.creatorGoldenberg, Samuel
dc.creatorKrieger, Marco Aurélio
dc.date2018-09-12T13:02:58Z
dc.date2018-09-12T13:02:58Z
dc.date2010
dc.date.accessioned2023-09-26T21:11:50Z
dc.date.available2023-09-26T21:11:50Z
dc.identifierBATISTA, Michel et al. A high-throughput cloning system for reverse genetics in Trypanosoma cruzi. BMC Microbiology, v. 10, n. 259, p. 1-12, 2010.
dc.identifier1471-2180
dc.identifierhttps://www.arca.fiocruz.br/handle/icict/28670
dc.identifier10.1186/1471-2180-10-259
dc.identifier1471-2180
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/8870673
dc.descriptionThe three trypanosomatids pathogenic to men, Trypanosoma cruzi, Trypanosoma brucei and Leishmania major, are etiological agents of Chagas disease, African sleeping sickness and cutaneous leishmaniasis, respectively. The complete sequencing of these trypanosomatid genomes represented a breakthrough in the understanding of these organisms. Genome sequencing is a step towards solving the parasite biology puzzle, as there are a high percentage of genes encoding proteins without functional annotation. Also, technical limitations in protein expression in heterologous systems reinforce the evident need for the development of a highthroughput reverse genetics platform. Ideally, such platform would lead to efficient cloning and compatibility with various approaches. Thus, we aimed to construct a highly efficient cloning platform compatible with plasmid vectors that are suitable for various approaches. How Resulted, we constructed a platform with a flexible structure allowing the exchange of various elements, such as promoters, fusion tags, intergenic regions or resistance markers. This platform is based on Gateway® technology, to ensure a fast and efficient cloning system. We obtained plasmid vectors carrying genes for fluorescent proteins (green, cyan or yellow), and sequences for the c-myc epitope, and tandem affinity purification or polyhistidine tags. The vectors were verified by successful subcellular localization of two previously characterized proteins (TcRab7 and PAR 2) and a putative centrin. For the tandem affinity purification tag, the purification of two protein complexes (ribosome and proteasome) was performed. This way, we constructed plasmids with an efficient cloning system and suitable for use across various applications, such as protein localization and co-localization, protein partner identification and protein expression. This platform also allows vector customization, as the vectors were constructed to enable easy exchange of its elements. The development of this high-throughput platform is a step closer towards large-scale trypanosome applications and initiatives.
dc.formatapplication/pdf
dc.languagepor
dc.publisherSpringer Nature
dc.rightsopen access
dc.subjectTrypanosoma cruzi
dc.subjectCloning
dc.subjectGenetic Vectors
dc.subjectPlasmids
dc.subjectReverse Genetics
dc.subjectClonación Molecular
dc.subjectVectores Genéticos
dc.subjectPlásmidos
dc.subjectGenética Inversa
dc.subjectClonagem Molecular
dc.subjectVetores Genéticos
dc.subjectPlasmídeos
dc.subjectGenética Reversa
dc.titleA high-throughput cloning system for reverse genetics in Trypanosoma cruzi
dc.typeArticle


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