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1.
Prog Neurobiol ; 187: 101770, 2020 04.
Artículo en Inglés | MEDLINE | ID: mdl-32001310

RESUMEN

White matter (WM) plasticity during adulthood is a recently described phenomenon by which experience can shape brain structure. It has been observed in humans using diffusion tensor imaging (DTI) and myelination has been suggested as a possible mechanism. Here, we set out to identify molecular and cellular changes associated with WM plasticity measured by DTI. We combined DTI, immunohistochemistry and mRNA expression analysis and examined the effects of somatosensory experience in adult rats. First, we observed experience-induced DTI differences in WM and in grey matter structure. C-Fos mRNA expression, a marker of cortical activity, in the barrel cortex correlated with the MRI WM metrics, indicating that molecular correlates of cortical activity relate to macroscale measures of WM structure. Analysis of myelin-related genes revealed higher myelin basic protein (MBP) mRNA expression. Higher MBP protein expression was also found via immunohistochemistry in WM. Finally, unbiased RNA sequencing analysis identified 134 differentially expressed genes encoding proteins involved in functions related to cell proliferation and differentiation, regulation of myelination and neuronal activity modulation. In conclusion, macroscale measures of WM plasticity are supported by both molecular and cellular evidence and confirm that myelination is one of the underlying mechanisms.


Asunto(s)
Encéfalo , Vaina de Mielina , Plasticidad Neuronal/fisiología , Percepción/fisiología , Sustancia Blanca , Animales , Imagen de Difusión Tensora , Expresión Génica , Masculino , Ratas , Ratas Long-Evans
2.
Biol Psychiatry ; 78(7): 485-95, 2015 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-25802080

RESUMEN

BACKGROUND: Quantitative genetic analysis of basic mouse behaviors is a powerful tool to identify novel genetic phenotypes contributing to neurobehavioral disorders. Here, we analyzed genetic contributions to single-trial, long-term social and nonsocial recognition and subsequently studied the functional impact of an identified candidate gene on behavioral development. METHODS: Genetic mapping of single-trial social recognition was performed in chromosome substitution strains, a sophisticated tool for detecting quantitative trait loci (QTL) of complex traits. Follow-up occurred by generating and testing knockout (KO) mice of a selected QTL candidate gene. Functional characterization of these mice was performed through behavioral and neurological assessments across developmental stages and analyses of gene expression and brain morphology. RESULTS: Chromosome substitution strain 14 mapping studies revealed an overlapping QTL related to long-term social and object recognition harboring Pcdh9, a cell-adhesion gene previously associated with autism spectrum disorder. Specific long-term social and object recognition deficits were confirmed in homozygous (KO) Pcdh9-deficient mice, while heterozygous mice only showed long-term social recognition impairment. The recognition deficits in KO mice were not associated with alterations in perception, multi-trial discrimination learning, sociability, behavioral flexibility, or fear memory. Rather, KO mice showed additional impairments in sensorimotor development reflected by early touch-evoked biting, rotarod performance, and sensory gating deficits. This profile emerged with structural changes in deep layers of sensory cortices, where Pcdh9 is selectively expressed. CONCLUSIONS: This behavior-to-gene study implicates Pcdh9 in cognitive functions required for long-term social and nonsocial recognition. This role is supported by the involvement of Pcdh9 in sensory cortex development and sensorimotor phenotypes.


Asunto(s)
Actividad Motora/fisiología , Reconocimiento en Psicología/fisiología , Corteza Sensoriomotora/patología , Filtrado Sensorial/fisiología , Percepción Social , Animales , Aprendizaje por Asociación/fisiología , Mapeo Cromosómico , Cognición/fisiología , Dendritas/patología , Ratones Endogámicos C57BL , Ratones Noqueados , Actividad Motora/genética , Fenotipo , Sitios de Carácter Cuantitativo , Corteza Sensoriomotora/crecimiento & desarrollo , Corteza Sensoriomotora/fisiopatología , Filtrado Sensorial/genética
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