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Updated: Jul 6, 2025

Loss- and Gain-of-function Approach to Investigate Early Cell Fate Determinants in Preimplantation Mouse Embryos
Published on: June 6, 2016
COUP-TFII regulates early bipotential gonad signaling and commitment to ovarian progenitors
Lucas G A Ferreira1,2, Marina M L Kizys1, Gabriel A C Gama1
1Laboratory of Molecular and Translational Endocrinology (LEMT), Endocrinology Division, Department of Medicine, Escola Paulista de Medicina, Universidade Federal de São Paulo, São Paulo, Brazil.
Background:
The absence of expression of the Y-chromosome linked testis-determining gene SRY in early supporting gonadal cells (ESGC) leads bipotential gonads into ovarian development. However, genetic variants in NR2F2, encoding three isoforms of the transcription factor COUP-TFII, represent a novel cause of SRY-negative 46,XX testicular/ovotesticular differences of sex development (T/OT-DSD). Thus, we hypothesized that COUP-TFII is part of the ovarian developmental network. COUP-TFII is known to be expressed in interstitial/mesenchymal cells giving rise to steroidogenic cells in fetal gonads, however its expression and function in ESGCs have yet to be explored.
Results:
By differentiating induced pluripotent stem cells into bipotential gonad-like cells in vitro and by analyzing single cell RNA-sequencing datasets of human fetal gonads, we identified that NR2F2 expression is highly upregulated during bipotential gonad development along with markers of bipotential state. NR2F2 expression was detected in early cell populations that precede the steroidogenic cell emergence and that retain a multipotent state in the undifferentiated gonad. The ESGCs differentiating into fetal Sertoli cells lost NR2F2 expression, whereas pre-granulosa cells remained NR2F2-positive. When examining the NR2F2 transcript variants individually, we demonstrated that the canonical isoform A, disrupted by frameshift variants previously reported in 46,XX T/OT-DSD patients, is nearly 1000-fold more highly expressed than other isoforms in bipotential gonad-like cells. To investigate the genetic network under COUP-TFII regulation in human gonadal cell context, we generated a NR2F2 knockout (KO) in the human granulosa-like cell line COV434 and studied NR2F2-KO COV434 cell transcriptome. NR2F2 ablation downregulated markers of ESGC and pre-granulosa cells. NR2F2-KO COV434 cells lost the enrichment for female-supporting gonadal progenitor and acquired gene signatures more similar to gonadal interstitial cells.
Conclusions:
Our findings suggest that COUP-TFII has a role in maintaining a multipotent state necessary for commitment to the ovarian development. We propose that COUP-TFII regulates cell fate during gonad development and impairment of its function may disrupt the transcriptional plasticity of ESGCs. During early gonad development, disruption of ESGC plasticity may drive them into commitment to the testicular pathway, as observed in 46,XX OT-DSD patients with NR2F2 haploinsufficiency.
Insights
Transcription factor COUP-TFII (NR2F2) is crucial for maintaining ovarian development by preserving the multipotent state of early supporting gonadal cells (ESGCs). Impaired NR2F2 function can lead to testicular development in 46,XX individuals.
Area of Science:
- Developmental Biology
- Genetics
- Endocrinology
Background:
- Ovarian development typically occurs in the absence of SRY gene expression.
- Genetic variants in NR2F2, encoding COUP-TFII, are a novel cause of 46,XX testicular/ovotesticular differences of sex development (T/OT-DSD).
- COUP-TFII's role in early supporting gonadal cells (ESGCs) during gonad development is unexplored.
Purpose of the Study:
- To investigate the expression and function of COUP-TFII in ESGCs.
- To determine if COUP-TFII is part of the ovarian developmental network.
- To understand the role of NR2F2 variants in 46,XX T/OT-DSD.
Main Methods:
- Differentiated induced pluripotent stem cells into bipotential gonad-like cells in vitro.
- Analyzed single-cell RNA-sequencing datasets of human fetal gonads.
- Generated NR2F2 knockout (KO) in a human granulosa-like cell line (COV434) and performed transcriptome analysis.
Main Results:
- NR2F2 expression is upregulated in bipotential gonads and early multipotent cells, decreasing as ESGCs differentiate into Sertoli cells.
- Isoform A of NR2F2 is highly expressed in bipotential cells and is disrupted in 46,XX T/OT-DSD patients.
- NR2F2 KO in COV434 cells downregulated ESGC/pre-granulosa markers and induced interstitial cell signatures.
Conclusions:
- COUP-TFII maintains ESGC multipotency, essential for ovarian development.
- COUP-TFII regulates cell fate during gonad development.
- Impaired COUP-TFII function disrupts ESGC transcriptional plasticity, potentially driving testicular development in 46,XX individuals.
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