Effects of polybrominated diphenyl ethers on steroidogenesis in rat Leydig cells. 2011

Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
Department of Physiology, School of Medicine, National Yang-Ming University, Shih-Pai, Taipei.

BACKGROUND Polybrominated diphenyl ethers (PBDEs) are brominated flame retardants that have been defined as major environmental pollutants. While previous studies have found that PBDEs may enhance the levels of sex-steroid hormones, their effects on testosterone secretion from rat Leydig cells are unclear. This study investigated the effects and mechanisms of PBDE-710, a mixture of tetra- and penta-PBDEs, on testosterone biosynthesis in rat Leydig cells. METHODS Leydig cells from adult male rats were challenged with different concentrations of PBDE-710 (0.5-15 ng/ml) to evaluate the effects on testosterone steroidogenesis. Concentrations of testosterone and of cAMP and pregnenolone in medium were measured by radioimmunoassay (RIA) and by enzyme-linked immunosorbent assay, respectively. Nuclear translocation of protein kinase A α (PKAα) was determined by immunofluorence assay and western blot assay, and the mRNA expression of steroidogenic acute regulatory protein (StAR) was analyzed by quantitative real-time polymerase chain reaction. RESULTS In this in vitro study, PBDE-710 (5 or 15 ng/ml) increased basal testosterone secretion and cAMP production by 3- and 2-fold, respectively. The stimulatory effect was abolished by adenylyl cyclase inhibitor. Enzyme activity of CYP11A1, as determined by the pregnenolone concentration, was stimulated by PBDE-710 treatment. Furthermore, nuclear translocation of PKAα was increased by 20% and StAR gene expression was elevated by 4-fold after PBDE-710 treatment. CONCLUSIONS These results suggest that low concentrations of PBDE-710 could stimulate testosterone secretion by acting directly on Leydig cells to activate the cAMP pathway and increase expression of StAR.

UI MeSH Term Description Entries
D007985 Leydig Cells Steroid-producing cells in the interstitial tissue of the TESTIS. They are under the regulation of PITUITARY HORMONES; LUTEINIZING HORMONE; or interstitial cell-stimulating hormone. TESTOSTERONE is the major androgen (ANDROGENS) produced. Interstitial Cells, Testicular,Leydig Cell,Testicular Interstitial Cell,Testicular Interstitial Cells,Cell, Leydig,Cell, Testicular Interstitial,Cells, Leydig,Cells, Testicular Interstitial,Interstitial Cell, Testicular
D008297 Male Males
D010750 Phosphoproteins Phosphoprotein
D002786 Cholesterol Side-Chain Cleavage Enzyme A mitochondrial cytochrome P450 enzyme that catalyzes the side-chain cleavage of C27 cholesterol to C21 pregnenolone in the presence of molecular oxygen and NADPH-FERRIHEMOPROTEIN REDUCTASE. This enzyme, encoded by CYP11A1 gene, catalyzes the breakage between C20 and C22 which is the initial and rate-limiting step in the biosynthesis of various gonadal and adrenal steroid hormones. CYP11A1,Cholesterol Desmolase,Cholesterol Monooxygenase (Side-Chain-Cleaving),Cytochrome P-450 CYP11A1,Cytochrome P-450(scc),20,22-Desmolase,CYP 11A1,Cytochrome P450 11A1,Cytochrome P450scc,20,22 Desmolase,Cholesterol Side Chain Cleavage Enzyme,Cytochrome P 450 CYP11A1
D005411 Flame Retardants Materials applied to fabrics, bedding, furniture, plastics, etc. to retard their burning; many may leach out and cause allergies or other harm. Fire Retardant,Fire Retardants,Fireproofing Agent,Fireproofing Agents,Flame Retardant,Agent, Fireproofing,Agents, Fireproofing,Retardant, Fire,Retardant, Flame,Retardants, Fire,Retardants, Flame
D006063 Chorionic Gonadotropin A gonadotropic glycoprotein hormone produced primarily by the PLACENTA. Similar to the pituitary LUTEINIZING HORMONE in structure and function, chorionic gonadotropin is involved in maintaining the CORPUS LUTEUM during pregnancy. CG consists of two noncovalently linked subunits, alpha and beta. Within a species, the alpha subunit is virtually identical to the alpha subunits of the three pituitary glycoprotein hormones (TSH, LH, and FSH), but the beta subunit is unique and confers its biological specificity (CHORIONIC GONADOTROPIN, BETA SUBUNIT, HUMAN). Chorionic Gonadotropin, Human,HCG (Human Chorionic Gonadotropin),Biogonadil,Choriogonadotropin,Choriogonin,Chorulon,Gonabion,Human Chorionic Gonadotropin,Pregnyl,Gonadotropin, Chorionic,Gonadotropin, Human Chorionic
D000225 Adenine A purine base and a fundamental unit of ADENINE NUCLEOTIDES. Vitamin B 4,4, Vitamin B,B 4, Vitamin
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013739 Testosterone A potent androgenic steroid and major product secreted by the LEYDIG CELLS of the TESTIS. Its production is stimulated by LUTEINIZING HORMONE from the PITUITARY GLAND. In turn, testosterone exerts feedback control of the pituitary LH and FSH secretion. Depending on the tissues, testosterone can be further converted to DIHYDROTESTOSTERONE or ESTRADIOL. 17-beta-Hydroxy-4-Androsten-3-one,17-beta-Hydroxy-8 alpha-4-Androsten-3-one,8-Isotestosterone,AndroGel,Androderm,Andropatch,Androtop,Histerone,Sterotate,Sustanon,Testim,Testoderm,Testolin,Testopel,Testosterone Sulfate,17 beta Hydroxy 4 Androsten 3 one,17 beta Hydroxy 8 alpha 4 Androsten 3 one,8 Isotestosterone
D015124 8-Bromo Cyclic Adenosine Monophosphate A long-acting derivative of cyclic AMP. It is an activator of cyclic AMP-dependent protein kinase, but resistant to degradation by cyclic AMP phosphodiesterase. 8-Bromo-cAMP,8-Br Cyclic AMP,8-Bromo Cyclic AMP,8-Bromo Cyclic Adenosine Monophosphate, Monosodium Salt,8-Bromo Cyclic Adenosine Monophosphate, Sodium Salt,8-Bromoadenosine 3',5'-Cyclic Monophosphate,Br Cycl AMP,8 Br Cyclic AMP,8 Bromo Cyclic AMP,8 Bromo Cyclic Adenosine Monophosphate,8 Bromo Cyclic Adenosine Monophosphate, Monosodium Salt,8 Bromo Cyclic Adenosine Monophosphate, Sodium Salt,8 Bromo cAMP,8 Bromoadenosine 3',5' Cyclic Monophosphate,AMP, Br Cycl,Cyclic AMP, 8-Br,Cyclic AMP, 8-Bromo

Related Publications

Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
July 2019, International journal of environmental research and public health,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
August 2023, International journal of molecular sciences,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
December 2010, Environmental toxicology and chemistry,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
June 2003, Neurotoxicology,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
February 2009, Chemosphere,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
October 2006, Acta paediatrica (Oslo, Norway : 1992). Supplement,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
January 2007, Roczniki Panstwowego Zakladu Higieny,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
May 2011, Reproductive toxicology (Elmsford, N.Y.),
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
September 2019, Steroids,
Kai-Lee Wang, and Shih-Min Hsia, and I-Fang Mao, and Mei-Lien Chen, and Shyi-Wu Wang, and Paulus S Wang
January 2015, PloS one,
Copied contents to your clipboard!