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Publication : Thyroid hormone receptors are required for the melatonin-dependent control of Rfrp gene expression in mice.

First Author  Quignon C Year  2020
Journal  FASEB J Volume  34
Issue  9 Pages  12072-12082
PubMed ID  32776612 Mgi Jnum  J:303194
Mgi Id  MGI:6512091 Doi  10.1096/fj.202000961R
Citation  Quignon C, et al. (2020) Thyroid hormone receptors are required for the melatonin-dependent control of Rfrp gene expression in mice. FASEB J 34(9):12072-12082
abstractText  Mammals adapt to seasons using a neuroendocrine calendar defined by the photoperiodic change in the nighttime melatonin production. Under short photoperiod, melatonin inhibits the pars tuberalis production of TSHbeta, which, in turn, acts on tanycytes to regulate the deiodinase 2/3 balance resulting in a finely tuned seasonal control of the intra-hypothalamic thyroid hormone T3. Despite the pivotal role of this T3 signaling for synchronizing reproduction with the seasons, T3 cellular targets remain unknown. One candidate is a population of hypothalamic neurons expressing Rfrp, the gene encoding the RFRP-3 peptide, thought to be integral for modulating rodent's seasonal reproduction. Here we show that nighttime melatonin supplementation in the drinking water of melatonin-deficient C57BL/6J mice mimics photoperiodic variations in the expression of the genes Tshb, Dio2, Dio3, and Rfrp, as observed in melatonin-proficient mammals. Notably, we report that this melatonin regulation of Rfrp expression is no longer observed in mice carrying a global mutation of the T3 receptor, TRalpha, but is conserved in mice with a selective neuronal mutation of TRalpha. In line with this observation, we find that TRalpha is widely expressed in the tanycytes. Altogether, our data demonstrate that the melatonin-driven T3 signal regulates RFRP-3 neurons through non-neuronal, possibly tanycytic, TRalpha.
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