Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.

Leptin, a peripheral signal synthetized by the adipocyte to regulate energy metabolism, can also be produced by placenta, where it may work as an autocrine hormone. We have previously demonstrated that leptin promotes proliferation and survival of trophoblastic cells. In the present work, we aimed t...

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Main Authors: Ayelén Rayen Toro, Julieta Lorena Maymó, Federico Matías Ibarbalz, Antonio Pérez-Pérez, Bernardo Maskin, Alicia Graciela Faletti, Víctor Sánchez-Margalet, Cecilia Laura Varone
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4055782?pdf=render
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spelling doaj-c17d3763e024447493ff6bab759aaef92020-11-25T00:47:05ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0196e9918710.1371/journal.pone.0099187Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.Ayelén Rayen ToroJulieta Lorena MaymóFederico Matías IbarbalzAntonio Pérez-PérezBernardo MaskinAlicia Graciela FalettiVíctor Sánchez-MargaletCecilia Laura VaroneLeptin, a peripheral signal synthetized by the adipocyte to regulate energy metabolism, can also be produced by placenta, where it may work as an autocrine hormone. We have previously demonstrated that leptin promotes proliferation and survival of trophoblastic cells. In the present work, we aimed to study the molecular mechanisms that mediate the survival effect of leptin in placenta. We used the human placenta choriocarcinoma BeWo and first trimester Swan-71 cell lines, as well as human placental explants. We tested the late phase of apoptosis, triggered by serum deprivation, by studying the activation of Caspase-3 and DNA fragmentation. Recombinant human leptin added to BeWo cell line and human placental explants, showed a decrease on Caspase-3 activation. These effects were dose dependent. Maximal effect was achieved at 250 ng leptin/ml. Moreover, inhibition of endogenous leptin expression with 2 µM of an antisense oligonucleotide, reversed Caspase-3 diminution. We also found that the cleavage of Poly [ADP-ribose] polymerase-1 (PARP-1) was diminished in the presence of leptin. We analyzed the presence of low DNA fragments, products from apoptotic DNA cleavage. Placental explants cultivated in the absence of serum in the culture media increased the apoptotic cleavage of DNA and this effect was prevented by the addition of 100 ng leptin/ml. Taken together these results reinforce the survival effect exerted by leptin on placental cells. To improve the understanding of leptin mechanism in regulating the process of apoptosis we determined the expression of different intermediaries in the apoptosis cascade. We found that under serum deprivation conditions, leptin increased the anti-apoptotic BCL-2 protein expression, while downregulated the pro-apoptotic BAX and BID proteins expression in Swan-71 cells and placental explants. In both models leptin augmented BCL-2/BAX ratio. Moreover we have demonstrated that p53, one of the key cell cycle-signaling proteins, is downregulated in the presence of leptin under serum deprivation. On the other hand, we determined that leptin reduced the phosphorylation of Ser-46 p53 that plays a pivotal role for apoptotic signaling by p53. Our data suggest that the observed anti-apoptotic effect of leptin in placenta is in part mediated by the p53 pathway. In conclusion, we provide evidence that demonstrates that leptin is a trophic factor for trophoblastic cells.http://europepmc.org/articles/PMC4055782?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ayelén Rayen Toro
Julieta Lorena Maymó
Federico Matías Ibarbalz
Antonio Pérez-Pérez
Bernardo Maskin
Alicia Graciela Faletti
Víctor Sánchez-Margalet
Cecilia Laura Varone
spellingShingle Ayelén Rayen Toro
Julieta Lorena Maymó
Federico Matías Ibarbalz
Antonio Pérez-Pérez
Bernardo Maskin
Alicia Graciela Faletti
Víctor Sánchez-Margalet
Cecilia Laura Varone
Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
PLoS ONE
author_facet Ayelén Rayen Toro
Julieta Lorena Maymó
Federico Matías Ibarbalz
Antonio Pérez-Pérez
Bernardo Maskin
Alicia Graciela Faletti
Víctor Sánchez-Margalet
Cecilia Laura Varone
author_sort Ayelén Rayen Toro
title Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
title_short Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
title_full Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
title_fullStr Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
title_full_unstemmed Leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
title_sort leptin is an anti-apoptotic effector in placental cells involving p53 downregulation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Leptin, a peripheral signal synthetized by the adipocyte to regulate energy metabolism, can also be produced by placenta, where it may work as an autocrine hormone. We have previously demonstrated that leptin promotes proliferation and survival of trophoblastic cells. In the present work, we aimed to study the molecular mechanisms that mediate the survival effect of leptin in placenta. We used the human placenta choriocarcinoma BeWo and first trimester Swan-71 cell lines, as well as human placental explants. We tested the late phase of apoptosis, triggered by serum deprivation, by studying the activation of Caspase-3 and DNA fragmentation. Recombinant human leptin added to BeWo cell line and human placental explants, showed a decrease on Caspase-3 activation. These effects were dose dependent. Maximal effect was achieved at 250 ng leptin/ml. Moreover, inhibition of endogenous leptin expression with 2 µM of an antisense oligonucleotide, reversed Caspase-3 diminution. We also found that the cleavage of Poly [ADP-ribose] polymerase-1 (PARP-1) was diminished in the presence of leptin. We analyzed the presence of low DNA fragments, products from apoptotic DNA cleavage. Placental explants cultivated in the absence of serum in the culture media increased the apoptotic cleavage of DNA and this effect was prevented by the addition of 100 ng leptin/ml. Taken together these results reinforce the survival effect exerted by leptin on placental cells. To improve the understanding of leptin mechanism in regulating the process of apoptosis we determined the expression of different intermediaries in the apoptosis cascade. We found that under serum deprivation conditions, leptin increased the anti-apoptotic BCL-2 protein expression, while downregulated the pro-apoptotic BAX and BID proteins expression in Swan-71 cells and placental explants. In both models leptin augmented BCL-2/BAX ratio. Moreover we have demonstrated that p53, one of the key cell cycle-signaling proteins, is downregulated in the presence of leptin under serum deprivation. On the other hand, we determined that leptin reduced the phosphorylation of Ser-46 p53 that plays a pivotal role for apoptotic signaling by p53. Our data suggest that the observed anti-apoptotic effect of leptin in placenta is in part mediated by the p53 pathway. In conclusion, we provide evidence that demonstrates that leptin is a trophic factor for trophoblastic cells.
url http://europepmc.org/articles/PMC4055782?pdf=render
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