Chromatin remodeling in neural development and plasticity

J Hsieh, FH Gage - Current opinion in cell biology, 2005 - Elsevier
Current opinion in cell biology, 2005Elsevier
Neural stem cells generate distinct cell types for tissue formation and cell replacement
during development and throughout adulthood. Neural development and plasticity are
determined by both extrinsic and intrinsic factors that interface to regulate gene programs for
controlling neuronal cell fate and function. Recent reports have shown that chromatin
remodeling and epigenetic gene regulation play an important role in such diverse areas as
neural cell fate specification and synaptic development and function. These epigenetic …
Neural stem cells generate distinct cell types for tissue formation and cell replacement during development and throughout adulthood. Neural development and plasticity are determined by both extrinsic and intrinsic factors that interface to regulate gene programs for controlling neuronal cell fate and function. Recent reports have shown that chromatin remodeling and epigenetic gene regulation play an important role in such diverse areas as neural cell fate specification and synaptic development and function. These epigenetic mechanisms include cell-type-specific transcriptional regulators, histone modifications and chromatin remodeling enzymes, and the activity of retrotransposons.
Elsevier
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