Literature DB >> 24899578

The nuclear receptor NR2F2 activates star expression and steroidogenesis in mouse MA-10 and MLTC-1 Leydig cells.

Raifish E Mendoza-Villarroel1, Nicholas M Robert1, Luc J Martin1, Catherine Brousseau1, Jacques J Tremblay2.   

Abstract

Testosterone production is dependent on cholesterol transport within the mitochondrial matrix, an essential step mediated by a protein complex containing the steroidogenic acute regulatory (STAR) protein. In steroidogenic Leydig cells, Star expression is hormonally regulated and involves several transcription factors. NR2F2 (COUP-TFII) is an orphan nuclear receptor that plays critical roles in cell differentiation and lineage determination. Conditional NR2F2 knockout prior to puberty leads to male infertility due to insufficient testosterone production, suggesting that NR2F2 could positively regulate steroidogenesis and Star expression. In this study we found that NR2F2 is expressed in the nucleus of some peritubular myoid cells and in interstitial cells, mainly in steroidogenically active adult Leydig cells. In MA-10 and MLTC-1 Leydig cells, small interfering RNA (siRNA)-mediated NR2F2 knockdown reduces basal steroid production without affecting hormone responsiveness. Consistent with this, we found that STAR mRNA and protein levels were reduced in NR2F2-depleted MA-10 and MLTC-1 cells. Transient transfections of Leydig cells revealed that a -986 bp mouse Star promoter construct was activated 3-fold by NR2F2. Using 5' progressive deletion constructs, we mapped the NR2F2-responsive element between -131 and -95 bp. This proximal promoter region contains a previously uncharacterized direct repeat 1 (DR1)-like element to which NR2F2 is recruited and directly binds. Mutations in the DR1-like element that prevent NR2F2 binding severely blunted NR2F2-mediated Star promoter activation. These data identify an essential role for the nuclear receptor NR2F2 as a direct activator of Star gene expression in Leydig cells, and thus in the control of steroid hormone biosynthesis.
© 2014 by the Society for the Study of Reproduction, Inc.

Entities:  

Keywords:  COUP-TFII; Leydig; NR2F2; steroidogenesis; steroidogenic acute regulatory protein

Mesh:

Substances:

Year:  2014        PMID: 24899578     DOI: 10.1095/biolreprod.113.115790

Source DB:  PubMed          Journal:  Biol Reprod        ISSN: 0006-3363            Impact factor:   4.285


  16 in total

1.  Multitrait meta-analysis identified genomic regions associated with sexual precocity in tropical beef cattle.

Authors:  Thaise P Melo; Marina R S Fortes; Tiago Bresolin; Lucio F M Mota; Lucia G Albuquerque; Roberto Carvalheiro
Journal:  J Anim Sci       Date:  2018-09-29       Impact factor: 3.159

2.  Steroidogenic genes expressions are repressed by high levels of leptin and the JAK/STAT signaling pathway in MA-10 Leydig cells.

Authors:  David A Landry; François Sormany; Josée Haché; Pauline Roumaud; Luc J Martin
Journal:  Mol Cell Biochem       Date:  2017-03-25       Impact factor: 3.396

3.  Growth Hormone-induced STAT5B Regulates Star Gene Expression Through a Cooperation With cJUN in Mouse MA-10 Leydig Cells.

Authors:  Pierre-Olivier Hébert-Mercier; Francis Bergeron; Nicholas M Robert; Samir Mehanovic; Kenley Joule Pierre; Raifish E Mendoza-Villarroel; Karine de Mattos; Catherine Brousseau; Jacques J Tremblay
Journal:  Endocrinology       Date:  2022-02-01       Impact factor: 4.736

Review 4.  Transcription Factors in the Regulation of Leydig Cell Gene Expression and Function.

Authors:  Karine de Mattos; Robert S Viger; Jacques J Tremblay
Journal:  Front Endocrinol (Lausanne)       Date:  2022-04-07       Impact factor: 6.055

5.  Suppression of testosterone production by nanoparticulate TiO2 is associated with ERK1/2-PKA-PKC signaling pathways in rat primary cultured Leydig cells.

Authors:  Lingjuan Li; Xu Mu; Lingqun Ye; Yuguan Ze; Fashui Hong
Journal:  Int J Nanomedicine       Date:  2018-09-28

6.  Identification of novel genes and pathways regulated by the orphan nuclear receptor COUP-TFII in mouse MA-10 Leydig cells†.

Authors:  Samir Mehanovic; Raifish E Mendoza-Villarroel; Karine de Mattos; Philippe Talbot; Robert S Viger; Jacques J Tremblay
Journal:  Biol Reprod       Date:  2021-11-15       Impact factor: 4.161

7.  Vimentin-Mediated Steroidogenesis Induced by Phthalate Esters: Involvement of DNA Demethylation and Nuclear Factor κB.

Authors:  Yuan Li; Yanhui Hu; Congcong Dong; Hongchao Lu; Chang Zhang; Qi Hu; Shifeng Li; Heng Qin; Zhong Li; Yubang Wang
Journal:  PLoS One       Date:  2016-01-08       Impact factor: 3.240

8.  Genome and epigenome analysis of monozygotic twins discordant for congenital heart disease.

Authors:  Guoliang Lyu; Chao Zhang; Te Ling; Rui Liu; Le Zong; Yiting Guan; Xiaoke Huang; Lei Sun; Lijun Zhang; Cheng Li; Yu Nie; Wei Tao
Journal:  BMC Genomics       Date:  2018-06-04       Impact factor: 3.969

Review 9.  COUP-TFII in Health and Disease.

Authors:  Simone Polvani; Sara Pepe; Stefano Milani; Andrea Galli
Journal:  Cells       Date:  2019-12-31       Impact factor: 6.600

Review 10.  Disorders of Sex Development-Novel Regulators, Impacts on Fertility, and Options for Fertility Preservation.

Authors:  Nathalia Lisboa Gomes; Tarini Chetty; Anne Jorgensen; Rod T Mitchell
Journal:  Int J Mol Sci       Date:  2020-03-26       Impact factor: 6.208

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