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Cofilin 1 Is Dynamically Modulated During Postnatal Development and by Visual Input in the Mouse Visual Cortex.

Authors :
Laguardia, Agustin
Dapueto, Agustina
McCuistion, Hanna
Rossi, Francesco Mattia
Source :
Neuroscience. Feb2023, Vol. 510, p147-156. 10p.
Publication Year :
2023

Abstract

• Expression of cofilin 1 in the mouse visual cortex. • Monocular deprivation modulates active and inactive forms of cofilin 1 in the visual cortex. • Potential role of cofilin 1 in experience-dependent plasticity in the visual cortex. Cofilin 1 is an actin depolymerizing protein playing a fundamental role in the turnover of actin filaments specifically in dendritic spines, where it has been associated with structural and functional plasticity processes. Using a differential proteomic approach, we recently identified cofilin 1 as a potential candidate for controlling plasticity levels in the mouse visual cortex. Here, we focus on analyzing the expression of cofilin 1 and of its serine-3 phosphorylated inactive form in the mouse visual cortex during postnatal development and its modulation by visual input. Western blot experiments showed that cofilin 1 decreases from the critical period to the adult stage, in correlation with the decreasing level of cortical plasticity, and that monocular deprivation increases its expression in the cortex contralateral to the deprived eye during the critical period but not in the adult stage. By immunohistochemistry, we identified that the phospho-cofilin 1 immunopositive signal is homogeneously expressed along the different layers of the mouse visual cortex and that it increases during postnatal development. Furthermore, monocular deprivation increases the phospho-cofilin 1 signal in the contralateral cortex to the deprived eye during the critical period but not in the adult stage. Altogether, these results suggest that cofilin 1 and its modification by phosphorylation are relevant players in the processes controlling experience-dependent plasticity in the mouse visual cortex. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03064522
Volume :
510
Database :
Academic Search Index
Journal :
Neuroscience
Publication Type :
Academic Journal
Accession number :
161526017
Full Text :
https://doi.org/10.1016/j.neuroscience.2022.11.024