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Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1

A pro-inflammatory cytokine profile at the feto-maternal interface may predispose immune maladaptation notably in early miscarriages. We investigated the involvement of estradiol (E(2))-activated serum-glucocorticoid regulated kinase 1 (SGK1) in preserving the tolerogenic and pro-survival intrauteri...

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Autores principales: Lou, Yiyun, Hu, Minhao, Wang, Qijing, Yuan, Mu, Wang, Ning, Le, Fang, Li, Lejun, Huang, Shisi, Wang, Liya, Xu, Xiangrong, Jin, Fan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5436564/
https://www.ncbi.nlm.nih.gov/pubmed/28529452
http://dx.doi.org/10.7150/ijbs.18278
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author Lou, Yiyun
Hu, Minhao
Wang, Qijing
Yuan, Mu
Wang, Ning
Le, Fang
Li, Lejun
Huang, Shisi
Wang, Liya
Xu, Xiangrong
Jin, Fan
author_facet Lou, Yiyun
Hu, Minhao
Wang, Qijing
Yuan, Mu
Wang, Ning
Le, Fang
Li, Lejun
Huang, Shisi
Wang, Liya
Xu, Xiangrong
Jin, Fan
author_sort Lou, Yiyun
collection PubMed
description A pro-inflammatory cytokine profile at the feto-maternal interface may predispose immune maladaptation notably in early miscarriages. We investigated the involvement of estradiol (E(2))-activated serum-glucocorticoid regulated kinase 1 (SGK1) in preserving the tolerogenic and pro-survival intrauterine microenvironment beneficial to gestation maintenance. Decidual SGK1 was down-regulated in early miscarriage, consistent with the lower serum E(2) concentration seen in pregnancy loss. Lipopolysaccharide (LPS)/Toll-like receptors 4 (TLR4) signaling induced apoptosis and the pro-inflammatory T helper type (T(H)) 1 response of decidual stromal cells (DSCs) were associated with miscarriage. SGK1 activation was suppressed by LPS/TLR4 signaling and would be rescued by E(2) administration via the PI3K signaling pathway in DSCs. SGK1 activation attenuated TLR4-mediated cell apoptosis, while promoting cell viability of DSCs by up-regulating the pro-survival genes BCL2 and XIAP, and enhancing the phosphorylation of FOXO1. Furthermore, E(2)-induced SGK1 activation reduced the secretion of pro-inflammatory T(H)1 cytokines, and promoted the generation of T(H)2 cytokines and elevated IRF4 mRNA and protein levels in LPS-incubated DSCs. Pharmacologic inhibition of SGK1 or suppression by small interfering (si) RNA increased the phosphorylation and nuclear translocation of NF-κB to reverse the pro-T(H)2 and anti-inflammatory effects of E(2) pretreatment, leading to compromised pregnancy. These findings suggest that the E(2)-mediated SGK1 activation suppressed LPS-mediated apoptosis and promoted the anti-inflammatory T(H)2 responses in DSCs, ultimately contributing to a successful pregnancy.
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spelling pubmed-54365642017-05-19 Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1 Lou, Yiyun Hu, Minhao Wang, Qijing Yuan, Mu Wang, Ning Le, Fang Li, Lejun Huang, Shisi Wang, Liya Xu, Xiangrong Jin, Fan Int J Biol Sci Research Paper A pro-inflammatory cytokine profile at the feto-maternal interface may predispose immune maladaptation notably in early miscarriages. We investigated the involvement of estradiol (E(2))-activated serum-glucocorticoid regulated kinase 1 (SGK1) in preserving the tolerogenic and pro-survival intrauterine microenvironment beneficial to gestation maintenance. Decidual SGK1 was down-regulated in early miscarriage, consistent with the lower serum E(2) concentration seen in pregnancy loss. Lipopolysaccharide (LPS)/Toll-like receptors 4 (TLR4) signaling induced apoptosis and the pro-inflammatory T helper type (T(H)) 1 response of decidual stromal cells (DSCs) were associated with miscarriage. SGK1 activation was suppressed by LPS/TLR4 signaling and would be rescued by E(2) administration via the PI3K signaling pathway in DSCs. SGK1 activation attenuated TLR4-mediated cell apoptosis, while promoting cell viability of DSCs by up-regulating the pro-survival genes BCL2 and XIAP, and enhancing the phosphorylation of FOXO1. Furthermore, E(2)-induced SGK1 activation reduced the secretion of pro-inflammatory T(H)1 cytokines, and promoted the generation of T(H)2 cytokines and elevated IRF4 mRNA and protein levels in LPS-incubated DSCs. Pharmacologic inhibition of SGK1 or suppression by small interfering (si) RNA increased the phosphorylation and nuclear translocation of NF-κB to reverse the pro-T(H)2 and anti-inflammatory effects of E(2) pretreatment, leading to compromised pregnancy. These findings suggest that the E(2)-mediated SGK1 activation suppressed LPS-mediated apoptosis and promoted the anti-inflammatory T(H)2 responses in DSCs, ultimately contributing to a successful pregnancy. Ivyspring International Publisher 2017-03-11 /pmc/articles/PMC5436564/ /pubmed/28529452 http://dx.doi.org/10.7150/ijbs.18278 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Lou, Yiyun
Hu, Minhao
Wang, Qijing
Yuan, Mu
Wang, Ning
Le, Fang
Li, Lejun
Huang, Shisi
Wang, Liya
Xu, Xiangrong
Jin, Fan
Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1
title Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1
title_full Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1
title_fullStr Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1
title_full_unstemmed Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1
title_short Estradiol Suppresses TLR4-triggered Apoptosis of Decidual Stromal Cells and Drives an Anti-inflammatory T(H)2 Shift by Activating SGK1
title_sort estradiol suppresses tlr4-triggered apoptosis of decidual stromal cells and drives an anti-inflammatory t(h)2 shift by activating sgk1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5436564/
https://www.ncbi.nlm.nih.gov/pubmed/28529452
http://dx.doi.org/10.7150/ijbs.18278
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