Editorial:Molecular EndocrinologyArticles in the Spotlight for December 2013

editorial OA: closed CC0
⚙ AI-generated summary by gemini-2.5-flash-lite, 2026-08-11 ⓘ

ATF3, COUP-TFII, and BMP15 expression in the corpus luteum, endometrium, and granulosa cells respectively were investigated for their roles in luteal regression, inflammation, decidualization, and progesterone production.

One-sentence paraphrase of the abstract; not a substitute for reading it. No clinical advice. How this works

⚙ AI-generated deep summary by qwen3.7-flash, 2026-09-10 · read from full text ⓘ

This editorial highlights three studies from the December 2013 issue of Molecular Endocrinology, focusing on reproductive biology mechanisms. One study by Mao et al. identifies ATF3 as a key mediator in bovine luteal regression triggered by prostaglandin F2α, while Chang et al. demonstrate that BMP15 suppresses progesterone production in human granulosa cells to prevent premature luteinization. The third paper by Li et al. investigates COUP-TFII in human endometrial stroma, showing it regulates inflammatory genes during decidualization and is reduced in ectopic lesions of endometriosis patients. Relevance to endometriosis: The paper is cited among other conditions, specifically discussing how COUP-TFII down-regulation contributes to endometriosis pathology through altered inflammatory gene expression in ectopic lesions.

Read from the paper's body, not the abstract. Not a substitute for reading the paper. No clinical advice. How this works

Abstract

Welcome to the December issue of Molecular Endocrinology. Among this month’s papers you’ll find the following research to be of great interest, particularly to those interested in reproductive biology. “ATF3 Expression in the Corpus Luteum: Possible Role in Luteal Regression” by Mao et al shows that the luteolytic hormone prostaglandin F2 (PGF2 ) selectively stimulated the expression of activating transcription factor 3 (ATF3) mRNA and ATF3 protein in large steroidogenic cells of the bovine corpus luteum in vivo and in vitro. The action of PGF2 was associated with the rapid activation of stress-activated protein kinases and the induction of ATF3 in large luteal cells. Furthermore, expression of ATF3 in large or small steroidogenic cells reduced LH-stimulated cAMP response element (CRE)mediated transcription downstream of protein kinase A (PKA) signaling and inhibited progesterone synthesis at a step before conversion of cholesterol to progesterone. Therefore, ATF3 may be primarily responsible for the PGF2 -dependent reduction in steroid synthesis that occurs during luteal regression. In “COUP-TFII Regulates Human Endometrial Stromal Genes Involved in Inflammation,” Li et al demonstrate that chicken ovalbumin upstream promoter-transcription factor II (COUP-TFII) was spatially and temporally expressed in endometrial stroma cells during the menstrual cycle in women. Furthermore, COUP-TFII was found to be reduced in stroma cells of ectopic lesions in endometriosis patients. Cistromic and transcriptomic analyses demonstrated that COUP-TF regulated processes critical for human endometrial stroma cell decidualization in vitro. Specifically, COUP-TFII was responsible for the down-regulation of inflammatory genes during decidualization. This may contribute to the function of decidual stroma cells in pregnancy and the pathology observed in endometriosis. In “BMP15 Suppresses Progesterone Production by Down-regulating StAR via ALK3 in Human Granulosa Cells” (freely available at http://mend.endojournals.org/), Chang et al found that bone morphogenetic protein 15 (BMP15), but not growth differentiation factor 9 (GDF9), reduced basal progesterone production by suppressing the expression of the rate-limiting steroidogenic regulatory (StAR) protein. Neither affected the expression of cytochrome P450 side chain cleavage (P450scc) enzyme or 3 -hydroxysteroid dehydrogenase (3 -HSD). The authors also showed that knockdown of ALK2 dramatically decreased basal StAR levels, indicating a positive role for ALK2 in maintaining StAR expression. Therefore, these findings suggest that oocyte-derived BMP15 plays a role in preventing premature luteinization by modulating progesterone production during the late stage of follicle development. Congratulations to all the authors in this issue for their fine work and research. Donald B. DeFranco, PhD Editor-in-Chief, Molecular Endocrinology
Full text 2,910 characters · extracted from oa-html · click to expand
Welcome to the December issue of Molecular Endocrinology. Among this month's papers you'll find the following research to be of great interest, particularly to those interested in reproductive biology. “ATF3 Expression in the Corpus Luteum: Possible Role in Luteal Regression” by Mao et al shows that the luteolytic hormone prostaglandin F2α (PGF2α) selectively stimulated the expression of activating transcription factor 3 (ATF3) mRNA and ATF3 protein in large steroidogenic cells of the bovine corpus luteum in vivo and in vitro. The action of PGF2α was associated with the rapid activation of stress-activated protein kinases and the induction of ATF3 in large luteal cells. Furthermore, expression of ATF3 in large or small steroidogenic cells reduced LH-stimulated cAMP response element (CRE)-mediated transcription downstream of protein kinase A (PKA) signaling and inhibited progesterone synthesis at a step before conversion of cholesterol to progesterone. Therefore, ATF3 may be primarily responsible for the PGF2α-dependent reduction in steroid synthesis that occurs during luteal regression. In “COUP-TFII Regulates Human Endometrial Stromal Genes Involved in Inflammation,” Li et al demonstrate that chicken ovalbumin upstream promoter-transcription factor II (COUP-TFII) was spatially and temporally expressed in endometrial stroma cells during the menstrual cycle in women. Furthermore, COUP-TFII was found to be reduced in stroma cells of ectopic lesions in endometriosis patients. Cistromic and transcriptomic analyses demonstrated that COUP-TF regulated processes critical for human endometrial stroma cell decidualization in vitro. Specifically, COUP-TFII was responsible for the down-regulation of inflammatory genes during decidualization. This may contribute to the function of decidual stroma cells in pregnancy and the pathology observed in endometriosis. In “BMP15 Suppresses Progesterone Production by Down-regulating StAR via ALK3 in Human Granulosa Cells” (freely available at http://mend.endojournals.org/), Chang et al found that bone morphogenetic protein 15 (BMP15), but not growth differentiation factor 9 (GDF9), reduced basal progesterone production by suppressing the expression of the rate-limiting steroidogenic regulatory (StAR) protein. Neither affected the expression of cytochrome P450 side chain cleavage (P450scc) enzyme or 3β-hydroxysteroid dehydrogenase (3β-HSD). The authors also showed that knockdown of ALK2 dramatically decreased basal StAR levels, indicating a positive role for ALK2 in maintaining StAR expression. Therefore, these findings suggest that oocyte-derived BMP15 plays a role in preventing premature luteinization by modulating progesterone production during the late stage of follicle development. Congratulations to all the authors in this issue for their fine work and research. Donald B. DeFranco, PhD Editor-in-Chief, Molecular Endocrinology

Text is read by the "Ask this paper" AI Q&A widget below. Extraction quality varies by source — PMC NXML preserves structure cleanly, OA-HTML may include some navigation residue, and OA-PDF can have broken hyphenation. The publisher copy (via DOI) is the canonical version.

My notes (saved in your browser only)

⚙ Ask this paper AI returns verbatim quotes from the full text · source: oa-html ⓘ

Answers must be backed by verbatim quotes from this paper's full text. Hallucinated quotes are dropped automatically; if no verbatim passage answers the question, we say so. How this works

Condition tags

endometriosis

Citation neighborhood (no data yet)

We don't have any in-corpus citations linked to this paper yet. The paper's references may be in our DB but unresolved to ``paper_id`` (resolution happens at ingest when the cited DOI matches a row we already have). Run the cross-source citation reconcile pass to retry.

Source provenance

europepmc
last seen: 2026-09-20T09:27:46.357103+00:00
openalex
last seen: 2026-06-10T17:14:06.276822+00:00
unpaywall
last seen: 2026-09-10T06:36:06.991349+00:00
License: CC0 · commercial use OK