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Transient hypothyroidism favors oligodendrocyte generation providing functional remyelination in the adult mouse brain. | LitMetric

In the adult brain, both neurons and oligodendrocytes can be generated from neural stem cells located within the Sub-Ventricular Zone (SVZ). Physiological signals regulating neuronal glial fate are largely unknown. Here we report that a thyroid hormone (T)-free window, with or without a demyelinating insult, provides a favorable environment for SVZ-derived oligodendrocyte progenitor generation. After demyelination, oligodendrocytes derived from these newly-formed progenitors provide functional remyelination, restoring normal conduction. The cellular basis for neuronal glial determination in progenitors involves asymmetric partitioning of EGFR and TRα1, expression of which favor glio- and neuro-genesis, respectively. Moreover, EGFR oligodendrocyte progenitors, but not neuroblasts, express high levels of a T-inactivating deiodinase, Dio3. Thus, TRα absence with high levels of Dio3 provides double-pronged blockage of T action during glial lineage commitment. These findings not only transform our understanding of how T orchestrates adult brain lineage decisions, but also provide potential insight into demyelinating disorders.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5779229PMC
http://dx.doi.org/10.7554/eLife.29996DOI Listing

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