Regulation of leptin expression by 17beta-estradiol in human placental cells involves membrane associated estrogen receptor alpha,☆☆,

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Abstract

The placenta produces a wide number of molecules that play essential roles in the establishment and maintenance of pregnancy. In this context, leptin has emerged as an important player in reproduction. The synthesis of leptin in normal trophoblastic cells is regulated by different endogenous biochemical agents, but the regulation of placental leptin expression is still poorly understood. We have previously reported that 17β-estradiol (E2) up-regulates placental leptin expression. To improve the understanding of estrogen receptor mechanisms in regulating leptin gene expression, in the current study we examined the effect of membrane-constrained E2 conjugate, E-BSA, on leptin expression in human placental cells. We have found that leptin expression was induced by E-BSA both in BeWo cells and human placental explants, suggesting that E2 also exerts its effects through membrane receptors. Moreover E-BSA rapidly activated different MAPKs and AKT pathways, and these pathways were involved in E2 induced placental leptin expression. On the other hand we demonstrated the presence of ERα associated to the plasma membrane of BeWo cells. We showed that E2 genomic and nongenomic actions could be mediated by ERα. Supporting this idea, the downregulation of ERα level through a specific siRNA, decreased E-BSA effects on leptin expression. Taken together, these results provide new evidence of the mechanisms whereby E2 regulates leptin expression in placenta and support the importance of leptin in placental physiology.

Highlights

► We study estrogen receptor mechanisms that regulate placental leptin expression. ► We use a membrane-constrained E2 conjugate, E-BSA. ► E-BSA induced leptin expression, involving the activation of MAPK and AKT pathways. ► ERα was detected in the plasma membrane of BeWo cells. ► ERα mediates genomic and nongenomic actions of E2 involved on leptin expression.

Abbreviations

E2
17β-estradiol
E-BSA
β-Estradiol 6-(O-carboxymethyl)oxime:BSA
ER
estrogen receptor
GPR
G protein-coupled membrane receptor
ERE
estrogen responsive element
LEP
leptin
Luc
luciferase
βgal
beta galactosidase
qRT-PCR
quantitative real-time RT-PCR
shRNA
short hairpin RNA
siRNA
small interfering RNA
MAPK/ERK
mitogen-activated kinase
MEK
MAPK kinase
AKT
protein kinase B
PI3K
phosphotidylinositol 3-kinase
SAPK/JNK
stress-activated protein kinase/c-Jun NH2-terminal kinase
JAK/STAT
Janus kinase/signal transducers and activators of transcription
PKA
protein kinase A
PLC
phospholipase C
PKC
protein kinase C
hCG
human chorionic gonadotropin
cAMP
cyclic adenosine monophosphate
cGMP
cyclic guanosine monophosphate
HDAC1
histone deacetylase 1
Sp-1
stimulating protein 1
a.u.
arbitrary units

Keywords

Leptin
17β-estradiol
Placenta
Gene expression
Estrogen receptor

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Summary sentence: 17β-estradiol, a master hormone in reproductive processes, regulates leptin expression in trophoblastic BeWo cells and placental explants through nongenomic actions involving membrane associated ERalpha.

☆☆

Disclosure statement: The authors have nothing to disclose.

Grant Support: YPG is supported by a CONICET fellowship. APP is a research fellow supported by the Instituto de Salud Carlos III (CM07/0025). This project was supported by Universidad de Buenos Aires (UBACYT 2008-X229, 2010-01/2123), CONICET (PIP 2008–0247), ANPCyT (PICT 2008–0425) Fundación Florencio Fiorini, Buenos Aires, Argentina and the AECI, Spain.