G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.

Thyroid hormone (T3) inhibits thyrotropin-releasing hormone (TRH) synthesis in the hypothalamic paraventricular nucleus (PVN). Although the T3 receptor (TR) β2 is known to mediate the negative regulation of the prepro-TRH gene, its molecular mechanism remains unknown. Our previous studies on the T3-...

Full description

Bibliographic Details
Main Authors: Go Kuroda, Shigekazu Sasaki, Akio Matsushita, Kenji Ohba, Yuki Sakai, Shinsuke Shinkai, Hiroko Misawa Nakamura, Satoru Yamagishi, Kohji Sato, Naoko Hirahara, Yutaka Oki, Masahiko Ito, Tetsuro Suzuki, Takafumi Suda
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0242380
id doaj-8af8b7591f07425a84120051e3d5aa5e
record_format Article
spelling doaj-8af8b7591f07425a84120051e3d5aa5e2021-03-04T12:28:25ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-011511e024238010.1371/journal.pone.0242380G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.Go KurodaShigekazu SasakiAkio MatsushitaKenji OhbaYuki SakaiShinsuke ShinkaiHiroko Misawa NakamuraSatoru YamagishiKohji SatoNaoko HiraharaYutaka OkiMasahiko ItoTetsuro SuzukiTakafumi SudaThyroid hormone (T3) inhibits thyrotropin-releasing hormone (TRH) synthesis in the hypothalamic paraventricular nucleus (PVN). Although the T3 receptor (TR) β2 is known to mediate the negative regulation of the prepro-TRH gene, its molecular mechanism remains unknown. Our previous studies on the T3-dependent negative regulation of the thyrotropin β subunit (TSHβ) gene suggest that there is a tethering mechanism, whereby liganded TRβ2 interferes with the function of the transcription factor, GATA2, a critical activator of the TSHβ gene. Interestingly, the transcription factors Sim1 and Arnt2, the determinants of PVN differentiation in the hypothalamus, are reported to induce expression of TRβ2 and GATA2 in cultured neuronal cells. Here, we confirmed the expression of the GATA2 protein in the TRH neuron of the rat PVN using immunohistochemistry with an anti-GATA2 antibody. According to an experimental study from transgenic mice, a region of the rat prepro-TRH promoter from nt. -547 to nt. +84 was able to mediate its expression in the PVN. We constructed a chloramphenicol acetyltransferase (CAT) reporter gene containing this promoter sequence (rTRH(547)-CAT) and showed that GATA2 activated the promoter in monkey kidney-derived CV1 cells. Deletion and mutation analyses identified a functional GATA-responsive element (GATA-RE) between nt. -357 and nt. -352. When TRβ2 was co-expressed, T3 reduced GATA2-dependent promoter activity to approximately 30%. Unexpectedly, T3-dependent negative regulation was maintained after mutation of the reported negative T3-responsive element, site 4. T3 also inhibited the GATA2-dependent transcription enhanced by cAMP agonist, 8-bromo-cAMP. A rat thyroid medullary carcinoma cell line, CA77, is known to express the preproTRH mRNA. Using a chromatin immunoprecipitation assay with this cell line where GATA2 expression plasmid was transfected, we observed the recognition of the GATA-RE by GATA2. We also confirmed GATA2 binding using gel shift assay with the probe for the GATA-RE. In CA77 cells, the activity of rTRH(547)-CAT was potentiated by overexpression of GATA2, and it was inhibited in a T3-dependent manner. These results suggest that GATA2 transactivates the rat prepro-TRH gene and that liganded TRβ2 interferes with this activation via a tethering mechanism as in the case of the TSHβ gene.https://doi.org/10.1371/journal.pone.0242380
collection DOAJ
language English
format Article
sources DOAJ
author Go Kuroda
Shigekazu Sasaki
Akio Matsushita
Kenji Ohba
Yuki Sakai
Shinsuke Shinkai
Hiroko Misawa Nakamura
Satoru Yamagishi
Kohji Sato
Naoko Hirahara
Yutaka Oki
Masahiko Ito
Tetsuro Suzuki
Takafumi Suda
spellingShingle Go Kuroda
Shigekazu Sasaki
Akio Matsushita
Kenji Ohba
Yuki Sakai
Shinsuke Shinkai
Hiroko Misawa Nakamura
Satoru Yamagishi
Kohji Sato
Naoko Hirahara
Yutaka Oki
Masahiko Ito
Tetsuro Suzuki
Takafumi Suda
G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.
PLoS ONE
author_facet Go Kuroda
Shigekazu Sasaki
Akio Matsushita
Kenji Ohba
Yuki Sakai
Shinsuke Shinkai
Hiroko Misawa Nakamura
Satoru Yamagishi
Kohji Sato
Naoko Hirahara
Yutaka Oki
Masahiko Ito
Tetsuro Suzuki
Takafumi Suda
author_sort Go Kuroda
title G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.
title_short G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.
title_full G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.
title_fullStr G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.
title_full_unstemmed G ATA2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded T3 receptor β2 in the rat hypothalamic paraventricular nucleus.
title_sort g ata2 mediates the negative regulation of the prepro-thyrotropin-releasing hormone gene by liganded t3 receptor β2 in the rat hypothalamic paraventricular nucleus.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Thyroid hormone (T3) inhibits thyrotropin-releasing hormone (TRH) synthesis in the hypothalamic paraventricular nucleus (PVN). Although the T3 receptor (TR) β2 is known to mediate the negative regulation of the prepro-TRH gene, its molecular mechanism remains unknown. Our previous studies on the T3-dependent negative regulation of the thyrotropin β subunit (TSHβ) gene suggest that there is a tethering mechanism, whereby liganded TRβ2 interferes with the function of the transcription factor, GATA2, a critical activator of the TSHβ gene. Interestingly, the transcription factors Sim1 and Arnt2, the determinants of PVN differentiation in the hypothalamus, are reported to induce expression of TRβ2 and GATA2 in cultured neuronal cells. Here, we confirmed the expression of the GATA2 protein in the TRH neuron of the rat PVN using immunohistochemistry with an anti-GATA2 antibody. According to an experimental study from transgenic mice, a region of the rat prepro-TRH promoter from nt. -547 to nt. +84 was able to mediate its expression in the PVN. We constructed a chloramphenicol acetyltransferase (CAT) reporter gene containing this promoter sequence (rTRH(547)-CAT) and showed that GATA2 activated the promoter in monkey kidney-derived CV1 cells. Deletion and mutation analyses identified a functional GATA-responsive element (GATA-RE) between nt. -357 and nt. -352. When TRβ2 was co-expressed, T3 reduced GATA2-dependent promoter activity to approximately 30%. Unexpectedly, T3-dependent negative regulation was maintained after mutation of the reported negative T3-responsive element, site 4. T3 also inhibited the GATA2-dependent transcription enhanced by cAMP agonist, 8-bromo-cAMP. A rat thyroid medullary carcinoma cell line, CA77, is known to express the preproTRH mRNA. Using a chromatin immunoprecipitation assay with this cell line where GATA2 expression plasmid was transfected, we observed the recognition of the GATA-RE by GATA2. We also confirmed GATA2 binding using gel shift assay with the probe for the GATA-RE. In CA77 cells, the activity of rTRH(547)-CAT was potentiated by overexpression of GATA2, and it was inhibited in a T3-dependent manner. These results suggest that GATA2 transactivates the rat prepro-TRH gene and that liganded TRβ2 interferes with this activation via a tethering mechanism as in the case of the TSHβ gene.
url https://doi.org/10.1371/journal.pone.0242380
work_keys_str_mv AT gokuroda gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT shigekazusasaki gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT akiomatsushita gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT kenjiohba gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT yukisakai gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT shinsukeshinkai gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT hirokomisawanakamura gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT satoruyamagishi gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT kohjisato gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT naokohirahara gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT yutakaoki gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT masahikoito gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT tetsurosuzuki gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
AT takafumisuda gata2mediatesthenegativeregulationofthepreprothyrotropinreleasinghormonegenebyligandedt3receptorb2intherathypothalamicparaventricularnucleus
_version_ 1714802634769039360