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Altered Cl- homeostasis hinders forebrain GABAergic interneuron migration in a mouse model of intellectual disability

Academic Article
Publication Date:
2021
abstract:
Impairments of inhibitory circuits are at the basis of most, if not all, cognitive deficits. The impact of OPHN1, a gene associate with intellectual disability (ID), on inhibitory neurons remains elusive. We addressed this issue by analyzing the postnatal migration of inhibitory interneurons derived from the subventricular zone in a validated mouse model of ID (OPHN1(-/y) mice). We found that the speed and directionality of migrating neuroblasts were deeply perturbed in OPHN1(-/y) mice. The significant reduction in speed was due to altered chloride (Cl-) homeostasis, while the overactivation of the OPHN1 downstream signaling pathway, RhoA kinase (ROCK), caused abnormalities in the directionality of the neuroblast progression in mutants. Blocking the cation-Cl- cotransporter KCC2 almost completely rescued the migration speed while proper directionality was restored upon ROCK inhibition. Our data unveil a strong impact of OPHN1 on GABAergic inhibitory interneurons and identify putative targets for successful therapeutic approaches.
Iris type:
01.01 Articolo in rivista
Keywords:
OPHN1; intellectual disability; Cl homeostasis; 2P imaging; interneuron migration
List of contributors:
Ratto, GIAN MICHELE; Lodovichi, Claudia; Losi, Gabriele
Authors of the University:
LODOVICHI CLAUDIA
LOSI GABRIELE
RATTO GIAN MICHELE
Handle:
https://iris.cnr.it/handle/20.500.14243/427502
Published in:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Journal
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