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Modelling genetic mosaicism of neurodevelopmental disorders in vivo by a Cre-amplifying fluorescent reporter

Academic Article
Publication Date:
2020
abstract:
Genetic mosaicism, a condition in which an organ includes cells with different genotypes, is frequently present in monogenic diseases of the central nervous system caused by the random inactivation of the X-chromosome, in the case of X-linked pathologies, or by somatic mutations affecting a subset of neurons. The comprehension of the mechanisms of these diseases and of the cell-autonomous effects of specific mutations requires the generation of sparse mosaic models, in which the genotype of each neuron is univocally identified by the expression of a fluorescent protein in vivo. Here, we show a dual-color reporter system that, when expressed in a floxed mouse line for a target gene, leads to the creation of mosaics with tunable degree. We demonstrate the generation of a knockout mosaic of the autism/epilepsy related gene PTEN in which the genotype of each neuron is reliably identified, and the neuronal phenotype is accurately characterized by two-photon microscopy.
Iris type:
01.01 Articolo in rivista
Keywords:
Focal Cortical Dysplasias; Somatic Mutations; Diagnostic Methods; Mouse Model; Spectrum; Brain; Pten; Recombination; Mtor; Malformations
List of contributors:
Parra, Riccardo; Pracucci, Enrico; Trovato, Francesco; Pillai, Vinoshene; Cozzolino, Olga; Nardi, Gabriele; Cruciani, Federica; Ratto, GIAN MICHELE; Sala, Carlo; Lodovichi, Claudia; Verpelli, Chiara; Landi, Silvia
Authors of the University:
LANDI SILVIA
LODOVICHI CLAUDIA
PILLAI RAJAN VINOSHENE
RATTO GIAN MICHELE
SALA CARLO
VERPELLI CHIARA
Handle:
https://iris.cnr.it/handle/20.500.14243/427206
Published in:
NATURE COMMUNICATIONS
Journal
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URL

https://www.nature.com/articles/s41467-020-19864-w
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