Transition Metal Chelator Induces Progesterone Production in Mouse Cumulus-Oocyte Complexes and Corpora Lutea

被引:0
作者
X. Tian
K. Anthony
Francisco J. Diaz
机构
[1] Pennsylvania State University,Center for Reproductive Biology and Health and Department of Animal Science
[2] University of North Carolina at Chapel Hill,Department of Radiation Oncology
来源
Biological Trace Element Research | 2017年 / 176卷
关键词
TPEN; Progesterone; Ovary;
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学科分类号
摘要
Progesterone production is upregulated in granulosa cells (cumulus and mural) after the LH surge, but the intra-follicular mechanisms regulating this transition are not completely known. Recent findings show that the transition metal chelator, N,N,N′,N′-tetrakis-(2-pyridylmethyl)-ethylenediamine (TPEN), impairs ovarian function. In this study, we provide evidence that chelating transition metals, including zinc, enhances progesterone production. The findings show that TPEN (transition metal chelator) increases abundance of Cyp11a1 and Star messenger RNA (mRNA) between 8- and 20-fold and progesterone production more than 3-fold in cultured cumulus-oocyte complexes (COC). Feeding a zinc-deficient diet for 10 days, but not 3 days, increased Star, Hsd3b, and prostaglandin F2 alpha receptor (Ptgfr) mRNA ~2.5-fold, suggesting that the effect of TPEN is through modulation of zinc availability. Progesterone from cumulus cells promotes oocyte developmental potential. Blocking progesterone production with epostane during maturation reduced subsequent blastocyst formation from 89 % in control to 18 % in epostane-treated complexes, but supplementation with progesterone restored blastocyst developmental potential to 94 %. Feeding a zinc-deficient diet for 5 days before ovulation did not affect the number of CL, STAR protein, or serum progesterone. However, incubating luteal tissue with TPEN increased abundance of Star, Hsd3b, and Ptgfr mRNA 2–3-fold and increased progesterone production 3-fold. TPEN is known to abolish SMAD2/3 signaling in cumulus cells. However, treatment of COC with the SMAD2/3 phosphorylation inhibitor, SB421542, did not by itself induce steroidogenic transcripts but did potentiate EGF-induced Star mRNA expression. Collectively, the results show that depletion of transition metals with TPEN acutely enhances progesterone biosynthesis in COC and luteal tissue.
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页码:374 / 383
页数:9
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[21]  
Panigone S(2000)Prostaglandin f(2alpha) induces distinct physiological responses in porcine corpora lutea after acquisition of luteolytic capacity Biol Reprod 63 1504-311
[22]  
Hsieh M(2007)Oocytes are required for the preantral granulosa cell to cumulus cell transition in mice Dev Biol 305 300-408
[23]  
Fu M(2001)Analysis of relative gene expression data using real-time quantitative PCR and the 2-[Delta][Delta]CT method Methods 25 402-519
[24]  
Persani L(1997)Physiological action of progesterone in target tissues Endocr Rev 18 502-778
[25]  
Conti M(2003)Progesterone-dependent regulation of female reproductive activity by two distinct progesterone receptor isoforms Steroids 68 771-845
[26]  
Diaz F(2000)Oocyte-secreted factor(s) determine functional differences between bovine mural granulosa cells and cumulus cells Biol Reprod 63 839-4465
[27]  
Wigglesworth K(2007)Are steroids obligatory mediators of luteinizing hormone/human chorionic gonadotropin-triggered resumption of meiosis in mammals? Endocrinology 148 4458-2144
[28]  
Eppig J(2003)17{beta}-Estradiol and progesterone improve in-vitro cytoplasmic maturation of oocytes from unstimulated prepubertal and adult rhesus monkeys Hum Reprod 18 2137-512
[29]  
Eppig JJ(2008)A possible role of progesterone receptor in mouse oocyte in vitro fertilization regulated by norethisterone and its reduced metabolite Contraception 78 507-978
[30]  
Pendola FL(1991)Transient expression of progesterone receptor messenger RNA in ovarian granulosa cells after the preovulatory luteinizing hormone surge Mol Endocrinol 5 967-769