Literature DB >> 22361821

A bimodal influence of thyroid hormone on cerebellum oligodendrocyte differentiation.

Frédéric Picou1, Teddy Fauquier, Fabrice Chatonnet, Frédéric Flamant.   

Abstract

Thyroid hormone (T(3)) can trigger a massive differentiation of cultured oligodendrocytes precursor cells (OPC) by binding the nuclear T(3) receptor α1 (TRα1). Whether this reflects a physiological function of TRα1 remains uncertain. Using a recently generated mouse model, in which CRE/loxP recombination is used to block its function, we show that TRα1 acts at two levels for the in vivo differentiation of OPC in mouse cerebellum. At the early postnatal stage, it promotes the secretion of several neurotrophic factors by acting in Purkinje neurons and astrocytes, defining an environment suitable for OPC differentiation. At later stages, TRα1 acts in a cell-autonomous manner to ensure the complete arrest of OPC proliferation. These data explain contradictory observations made on various models and outline the importance of T(3) signaling both for synchronizing postnatal neurodevelopment and restraining OPC proliferation in adult brain.

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Year:  2012        PMID: 22361821      PMCID: PMC5417134          DOI: 10.1210/me.2011-1316

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  73 in total

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4.  Cerebellar GABAergic progenitors adopt an external granule cell-like phenotype in the absence of Ptf1a transcription factor expression.

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  20 in total

Review 1.  Deciphering direct and indirect influence of thyroid hormone with mouse genetics.

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Journal:  Mol Endocrinol       Date:  2014-03-10

Review 2.  Thyroid Hormone Signaling in Oligodendrocytes: from Extracellular Transport to Intracellular Signal.

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3.  Cerebellar abnormalities in mice lacking type 3 deiodinase and partial reversal of phenotype by deletion of thyroid hormone receptor α1.

Authors:  Robin P Peeters; Arturo Hernandez; Lily Ng; Michelle Ma; David S Sharlin; Mritunjay Pandey; William F Simonds; Donald L St Germain; Douglas Forrest
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4.  Thyroid hormone triggers the developmental loss of axonal regenerative capacity via thyroid hormone receptor α1 and krüppel-like factor 9 in Purkinje cells.

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Journal:  Proc Natl Acad Sci U S A       Date:  2012-08-13       Impact factor: 11.205

Review 5.  Thyroid hormone and the brain: Mechanisms of action in development and role in protection and promotion of recovery after brain injury.

Authors:  Yan-Yun Liu; Gregory A Brent
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7.  Effect of Experimental Thyrotoxicosis on Brain Gray Matter: A Voxel-Based Morphometry Study.

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Journal:  Eur Thyroid J       Date:  2015-05-30

Review 8.  The relation between thyroid dysregulation and impaired cognition/behaviour: An integrative review.

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Review 9.  Involvement of Thyroid Hormones in Brain Development and Cancer.

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