The role of endogenous free radical signalling in human endometrium

Differentiation of human endometrial stromal cells (HESCs) into specialized decidual cells is critical for embryo implantation and maintenance of a successful pregnancy. Initiation of this differentiation process, termed decidualization, is strictly dependent on elevated cAMP levels, whereas its mai...

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Main Author: Al Sabbagh, Marwa Khalid Ebrahim Ali
Other Authors: Hanyaloglu, Aylin
Published: Imperial College London 2012
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Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.550935
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spelling ndltd-bl.uk-oai-ethos.bl.uk-5509352017-08-30T03:16:38ZThe role of endogenous free radical signalling in human endometriumAl Sabbagh, Marwa Khalid Ebrahim AliHanyaloglu, Aylin2012Differentiation of human endometrial stromal cells (HESCs) into specialized decidual cells is critical for embryo implantation and maintenance of a successful pregnancy. Initiation of this differentiation process, termed decidualization, is strictly dependent on elevated cAMP levels, whereas its maintenance requires continuous progesterone signalling. Here I show that NADPH oxidase-dependent reactive oxygen species (ROS) play a critical role in initiating and maintaining the decidual process. I first show that cAMP-dependent induction of decidual marker genes can be attenuated or enhanced upon inhibition or activation of the NADPH oxidase complex, respectively. Time-course analysis demonstrated that cAMP enhances endogenous ROS production, apparent after 12 hours of stimulation, which coincides with a marked induction of differentiation markers. By a process of elimination, I identified NOX4 as the main catalytic subunit involved in decidualization. Silencing of NOX4, or its cofactor p22PHOX, impaired the decidual process. I then show that the NOX4/p22PHOX complex regulates the transcriptional activity of CCAAT/enhancer binding protein β, a key regulator of HESC differentiation. Furthermore, microarray analysis revealed that the NOX4/p22PHOX complex functions downstream FOXO1, a multifaceted transcription factor involved in antioxidant defences, DNA repair and cell cycle regulation. In agreement, knockdown of NOX4/p22PHOX complex disrupted endogenous ROS production and resulted in a paradoxical prooxidant stress response further characterized by activation of the DNA repair pathway in the absence of primary DNA damage or cell death. Finally, I provide preliminary data that p22PHOX is downregulated at the transcript and protein level in the eutopic endometrium of patients with endometriosis. In summary, endogenous ROS signalling is critical for the differentiation and redox homeostasis of HESCs. Furthermore, deregulation of endometrial NADPH oxidase-dependent ROS production and signalling may be a hallmark of endometriosis, a prevalent and debilitating reproductive disorder.618.1780599Imperial College Londonhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.550935http://hdl.handle.net/10044/1/9233Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 618.1780599
spellingShingle 618.1780599
Al Sabbagh, Marwa Khalid Ebrahim Ali
The role of endogenous free radical signalling in human endometrium
description Differentiation of human endometrial stromal cells (HESCs) into specialized decidual cells is critical for embryo implantation and maintenance of a successful pregnancy. Initiation of this differentiation process, termed decidualization, is strictly dependent on elevated cAMP levels, whereas its maintenance requires continuous progesterone signalling. Here I show that NADPH oxidase-dependent reactive oxygen species (ROS) play a critical role in initiating and maintaining the decidual process. I first show that cAMP-dependent induction of decidual marker genes can be attenuated or enhanced upon inhibition or activation of the NADPH oxidase complex, respectively. Time-course analysis demonstrated that cAMP enhances endogenous ROS production, apparent after 12 hours of stimulation, which coincides with a marked induction of differentiation markers. By a process of elimination, I identified NOX4 as the main catalytic subunit involved in decidualization. Silencing of NOX4, or its cofactor p22PHOX, impaired the decidual process. I then show that the NOX4/p22PHOX complex regulates the transcriptional activity of CCAAT/enhancer binding protein β, a key regulator of HESC differentiation. Furthermore, microarray analysis revealed that the NOX4/p22PHOX complex functions downstream FOXO1, a multifaceted transcription factor involved in antioxidant defences, DNA repair and cell cycle regulation. In agreement, knockdown of NOX4/p22PHOX complex disrupted endogenous ROS production and resulted in a paradoxical prooxidant stress response further characterized by activation of the DNA repair pathway in the absence of primary DNA damage or cell death. Finally, I provide preliminary data that p22PHOX is downregulated at the transcript and protein level in the eutopic endometrium of patients with endometriosis. In summary, endogenous ROS signalling is critical for the differentiation and redox homeostasis of HESCs. Furthermore, deregulation of endometrial NADPH oxidase-dependent ROS production and signalling may be a hallmark of endometriosis, a prevalent and debilitating reproductive disorder.
author2 Hanyaloglu, Aylin
author_facet Hanyaloglu, Aylin
Al Sabbagh, Marwa Khalid Ebrahim Ali
author Al Sabbagh, Marwa Khalid Ebrahim Ali
author_sort Al Sabbagh, Marwa Khalid Ebrahim Ali
title The role of endogenous free radical signalling in human endometrium
title_short The role of endogenous free radical signalling in human endometrium
title_full The role of endogenous free radical signalling in human endometrium
title_fullStr The role of endogenous free radical signalling in human endometrium
title_full_unstemmed The role of endogenous free radical signalling in human endometrium
title_sort role of endogenous free radical signalling in human endometrium
publisher Imperial College London
publishDate 2012
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.550935
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