Literature DB >> 23999154

Modulation of semaphorin3A in perineuronal nets during structural plasticity in the adult cerebellum.

Daniela Carulli1, Simona Foscarin, Alessio Faralli, Ermira Pajaj, Ferdinando Rossi.   

Abstract

In the adult central nervous system (CNS) subsets of neurons are enwrapped by densely organized extracellular matrix structures, called perineuronal nets (PNNs). PNNs are formed at the end of critical periods and contribute to synapse stabilization. Enzymatic degradation of PNNs or genetic deletion of specific PNN components leads to the prolongation of the plasticity period. PNNs consist of extracellular matrix molecules, including chondroitin sulfate proteoglycans, hyaluronan, tenascins and link proteins. It has been recently shown that the chemorepulsive axon guidance protein semaphorin3A (Sema3A) is also a constituent of PNNs, binding with high affinity to the sugar chains of chondroitin sulfate proteoglycans. To elucidate whether the expression of Sema3A is modified in parallel with structural plasticity in the adult CNS, we examined Sema3A expression in the deep cerebellar nuclei of the adult mouse in a number of conditions associated with structural reorganization of the local connectivity. We found that Sema3A in PNNs is reduced during enhanced neuritic remodeling, in both physiological and injury-induced conditions. Moreover, we provide evidence that Sema3A is tightly associated with Purkinje axons and their terminals and its amount in the PNNs is related to Purkinje cell innervation of DCN neurons, but not to glutamatergic inputs. On the whole these data suggest that Sema3A may contribute to the growth-inhibitory properties of PNNs and Purkinje neurons may directly control their specific connection pattern through the release and capture of this guidance cue in the specialized ECM that surrounds their terminals.
© 2013.

Entities:  

Keywords:  CSPG; Cartilage link protein-1; Cerebellum; DCN; ECM; Enriched environment; GAP-43; PC; PI; PNN; Perineuronal net; Plasticity; Purkinje cell; Sema3A; TG; WFA; WT; Wisteria floribunda agglutinin; chondroitin sulfate proteoglycan; deep cerebellar nuclei; extracellular matrix; perineuronal net; propidium iodidie; semaphorin3A; transgenic; wild-type

Mesh:

Substances:

Year:  2013        PMID: 23999154     DOI: 10.1016/j.mcn.2013.08.003

Source DB:  PubMed          Journal:  Mol Cell Neurosci        ISSN: 1044-7431            Impact factor:   4.314


  24 in total

1.  Sugar-dependent modulation of neuronal development, regeneration, and plasticity by chondroitin sulfate proteoglycans.

Authors:  Gregory M Miller; Linda C Hsieh-Wilson
Journal:  Exp Neurol       Date:  2015-08-24       Impact factor: 5.330

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Review 5.  Extracellular Matrix in Neural Plasticity and Regeneration.

Authors:  Yurii A Chelyshev; Ilyas M Kabdesh; Yana O Mukhamedshina
Journal:  Cell Mol Neurobiol       Date:  2020-10-31       Impact factor: 5.046

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7.  Inhibition of Semaphorin3A Promotes Ocular Dominance Plasticity in the Adult Rat Visual Cortex.

Authors:  Elena Maria Boggio; Erich M Ehlert; Leonardo Lupori; Elizabeth B Moloney; Fred De Winter; Craig W Vander Kooi; Laura Baroncelli; Vasilis Mecollari; Bas Blits; James W Fawcett; Joost Verhaagen; Tommaso Pizzorusso
Journal:  Mol Neurobiol       Date:  2019-01-31       Impact factor: 5.590

8.  Nicotine self-administration remodels perineuronal nets in ventral tegmental area and orbitofrontal cortex in adult male rats.

Authors:  Dolores B Vazquez-Sanroman; Reyna D Monje; Michael T Bardo
Journal:  Addict Biol       Date:  2016-08-22       Impact factor: 4.280

9.  Diurnal changes in perineuronal nets and parvalbumin neurons in the rat medial prefrontal cortex.

Authors:  John H Harkness; Angela E Gonzalez; Priyanka N Bushana; Emily T Jorgensen; Deborah M Hegarty; Ariel A Di Nardo; Alain Prochiantz; Jonathan P Wisor; Sue A Aicher; Travis E Brown; Barbara A Sorg
Journal:  Brain Struct Funct       Date:  2021-02-14       Impact factor: 3.270

10.  Disruption of rat deep cerebellar perineuronal net alters eyeblink conditioning and neuronal electrophysiology.

Authors:  Deidre E O'Dell; Bernard G Schreurs; Carrie Smith-Bell; Desheng Wang
Journal:  Neurobiol Learn Mem       Date:  2020-12-04       Impact factor: 2.877

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