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Nayar, S. G.

Publications and source records attributed to Nayar, S. G..

2 recordsLinked to original sources

The INO80 chromatin remodeling complex regulates histone H2A.Z mobility and the G1-S transition in oligodendrocyte precursors

Chromatin remodelling complexes (CRCs) participate in oligodendrocyte (OL) differentiation, survival and maintenance. We asked whether CRCs also control proliferation of OL precursors (OPs) - focusing on the INO80 complex, which is known to regulate proliferation of a variety of other cell types during development and disease. CRISPR/Cas9-mediated inactivation of Ino80 in vitro, or Cre-mediated deletion in vivo, slowed the OP cell cycle substantially by prolonging G1, without inducing OL differentiation. RNAseq analysis revealed that E2F target genes were dysregulated in OPs from INO80-deficient mice, but correlated RNAseq and ATAC-seq uncovered no general correlation beween gene expression and altered nucleosome positioning at transcription start sites. Fluorescence photobleaching experiments in cultured OPs demonstrated that histone H2A.Z mobility increased following loss of INO80, suggesting that INO80 regulates the cell cycle machinery in OPs through H2A.Z/ H2A exchange. We also present evidence that INO80 associates with OLIG2, a master regulator of OL development.

neuroscience↗

Oligodendrocyte dynamics dictate individual performance outcomes of working memory training in mice

Motor skill learning stimulates and requires generation of myelinating oligodendrocytes (OLs) from their precursors (OLPs). We asked whether OL production is also required for non-motor learning and cognition, using T-maze and radial arm maze tasks that tax spatial working memory. Maze training stimulated OL production in the medial prefrontal cortex (mPFC), anterior corpus callosum (genu), dorsal thalamus and hippocampal formation; myelin sheath formation was also stimulated in the genu. Genetic blockade of OL differentiation and neo-myelination in Myrf conditional-knockout mice strongly impaired training-induced improvements in maze performance. Remarkably, there was a strong positive correlation between working memory performance of individual mice and the scale of OLP proliferation and OL generation during training, but not with the number or intensity of c-Fos+ neurons in the mPFC, underscoring the key role of OL lineage cells in cognitive performance.

neuroscience↗