Proteins associated with the termination of ocular dominance column plasticity in Long Evans rats

To investigate the mechanism of the termination of ocular dominance column plasticity by electrophysiologic analysis and 2-dimensional electrophoresis-mass spectrography (2-DE/MS). The changes in ocular dominance columns following monocular deprivation were electrophysiologically detected in 22-day-...

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Published inYanke xuebao Vol. 23; no. 3; p. 143
Main Authors Yao, Junping, Yin, Zhengqin, Wang, Shijun
Format Journal Article
LanguageEnglish
Published China 01.09.2007
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Abstract To investigate the mechanism of the termination of ocular dominance column plasticity by electrophysiologic analysis and 2-dimensional electrophoresis-mass spectrography (2-DE/MS). The changes in ocular dominance columns following monocular deprivation were electrophysiologically detected in 22-day-old, 100-day-old and chondroitinase-perfused 100-day-old rats. Total protein of grey matter of the primary visual cortex was extracted and studied by 2-DE/MS from the three groups of rats. Monocular deprivation may lead to shifts in ocular dominance columns in 22-day-old and chondroitinase-perfused 100-day-old rats, but not in 100-day-old rats. Four protein spots present in grey matter of the primary visual cortex in 100-day-old, but not in that of 22-day-old and chondroitinase-perfused rats, and mass spectrography identified two of these proteins. The electrophysiologic results show that ocular dominance column plasticity presents in 22-day-old rats, ends up in 100-day-old rats and restored in chondroitinase-perfused 100-day-old rats. 2-DE/MS results show that phosphatidylethanolamine binding protein and glial fibrillary acidic protein delta may be associated with the termination of ocular dominance column plasticity in the rat, but need more evidence to confirm it.
AbstractList To investigate the mechanism of the termination of ocular dominance column plasticity by electrophysiologic analysis and 2-dimensional electrophoresis-mass spectrography (2-DE/MS). The changes in ocular dominance columns following monocular deprivation were electrophysiologically detected in 22-day-old, 100-day-old and chondroitinase-perfused 100-day-old rats. Total protein of grey matter of the primary visual cortex was extracted and studied by 2-DE/MS from the three groups of rats. Monocular deprivation may lead to shifts in ocular dominance columns in 22-day-old and chondroitinase-perfused 100-day-old rats, but not in 100-day-old rats. Four protein spots present in grey matter of the primary visual cortex in 100-day-old, but not in that of 22-day-old and chondroitinase-perfused rats, and mass spectrography identified two of these proteins. The electrophysiologic results show that ocular dominance column plasticity presents in 22-day-old rats, ends up in 100-day-old rats and restored in chondroitinase-perfused 100-day-old rats. 2-DE/MS results show that phosphatidylethanolamine binding protein and glial fibrillary acidic protein delta may be associated with the termination of ocular dominance column plasticity in the rat, but need more evidence to confirm it.
Author Wang, Shijun
Yin, Zhengqin
Yao, Junping
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StartPage 143
SubjectTerms Animals
Dominance, Ocular - physiology
Glial Fibrillary Acidic Protein
Neuronal Plasticity - physiology
Phosphatidylethanolamine Binding Protein
Rats
Rats, Long-Evans
Visual Cortex
Title Proteins associated with the termination of ocular dominance column plasticity in Long Evans rats
URI https://www.ncbi.nlm.nih.gov/pubmed/18041181
Volume 23
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