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The regulation and function of acetylated high-mobility group box 1 during implantation and decidualization

Li, Yue ; Chen, Si Ting ; He, Yu Ying ; Li, Bo ; Yang, Chen ; Yang, Zhen Shan LU orcid and Yang, Zeng Ming (2023) In Frontiers in Immunology 14.
Abstract

Introduction: High-mobility group box 1 (HMGB1) is a non-histone nuclear protein and can be extracellularly secreted to induce sterile inflammation. Although uterine deletion of HMGB1 causes implantation and decidualization defects, how secreted HMGB1 is involved in mouse early pregnancy is still unknown. Methods: Mouse models, mouse primary endometrial cells and human endometrial cell lines were used in this study. Both immunofluorescence and Western blot were performed to show the localization and relative level of HMGB1 and acetylated HMGB1, respectively. Relative mRNA levels were analyzed by real time RT-PCR. Results: The secreted HMGB1 was detected in uterine lumen fluid in mouse periimplantation uterus. There is an obvious... (More)

Introduction: High-mobility group box 1 (HMGB1) is a non-histone nuclear protein and can be extracellularly secreted to induce sterile inflammation. Although uterine deletion of HMGB1 causes implantation and decidualization defects, how secreted HMGB1 is involved in mouse early pregnancy is still unknown. Methods: Mouse models, mouse primary endometrial cells and human endometrial cell lines were used in this study. Both immunofluorescence and Western blot were performed to show the localization and relative level of HMGB1 and acetylated HMGB1, respectively. Relative mRNA levels were analyzed by real time RT-PCR. Results: The secreted HMGB1 was detected in uterine lumen fluid in mouse periimplantation uterus. There is an obvious difference for secreted HMGB1 levels in uterine fluid between day 4 of pregnancy and day 4 of pseudopregnancy, suggesting the involvement of blastocysts during HMGB1 secretion. Trypsin is clearly detected in mouse blastocyst cavity and in the supernatant of cultured blastocysts. Trypsin significantly stimulates HB-EGF production through activating PAR2 and ADAM17. Uterine injection of PAR2 inhibitor into day 4 pregnant mice significantly reduces the number of implantation sites. HB-EGF released from luminal epithelium can induce mouse in vitro decidualization. The conditioned medium collected from trypsin-treated luminal epithelium is able to induce in vitro decidualization, which is suppressed by EGFR inhibitor. Intrauterine injection of glycyrrhizin (HMGB1 inhibitor) can significantly inhibit mouse embryo implantation. We also showed that exogenous HMGB1 released from human epithelial cells are able to induce human in vitro decidualization. Conclusion: Trypsin can induce decidualization of stromal cells via PAR2-HMGB1-ADAM17-HB-EGF from luminal epithelium.

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author
; ; ; ; ; and
publishing date
type
Contribution to journal
publication status
published
keywords
decidualization, endometrium, HMGB1, mouse, sterile inflammation, uterus
in
Frontiers in Immunology
volume
14
article number
1024706
publisher
Frontiers Media S. A.
external identifiers
  • scopus:85147707354
  • pmid:36761729
ISSN
1664-3224
DOI
10.3389/fimmu.2023.1024706
language
English
LU publication?
no
additional info
Funding Information: This study was supported by the National Key Research and Development Program of China (2018YFC1004400) and National Natural Science Foundation of China (31871511 and 32171114). Publisher Copyright: Copyright © 2023 Li, Chen, He, Li, Yang, Yang and Yang.
id
3b85813e-8646-4773-88d0-68a0c2312d99
date added to LUP
2024-02-28 14:56:25
date last changed
2024-04-27 13:28:44
@article{3b85813e-8646-4773-88d0-68a0c2312d99,
  abstract     = {{<p>Introduction: High-mobility group box 1 (HMGB1) is a non-histone nuclear protein and can be extracellularly secreted to induce sterile inflammation. Although uterine deletion of HMGB1 causes implantation and decidualization defects, how secreted HMGB1 is involved in mouse early pregnancy is still unknown. Methods: Mouse models, mouse primary endometrial cells and human endometrial cell lines were used in this study. Both immunofluorescence and Western blot were performed to show the localization and relative level of HMGB1 and acetylated HMGB1, respectively. Relative mRNA levels were analyzed by real time RT-PCR. Results: The secreted HMGB1 was detected in uterine lumen fluid in mouse periimplantation uterus. There is an obvious difference for secreted HMGB1 levels in uterine fluid between day 4 of pregnancy and day 4 of pseudopregnancy, suggesting the involvement of blastocysts during HMGB1 secretion. Trypsin is clearly detected in mouse blastocyst cavity and in the supernatant of cultured blastocysts. Trypsin significantly stimulates HB-EGF production through activating PAR2 and ADAM17. Uterine injection of PAR2 inhibitor into day 4 pregnant mice significantly reduces the number of implantation sites. HB-EGF released from luminal epithelium can induce mouse in vitro decidualization. The conditioned medium collected from trypsin-treated luminal epithelium is able to induce in vitro decidualization, which is suppressed by EGFR inhibitor. Intrauterine injection of glycyrrhizin (HMGB1 inhibitor) can significantly inhibit mouse embryo implantation. We also showed that exogenous HMGB1 released from human epithelial cells are able to induce human in vitro decidualization. Conclusion: Trypsin can induce decidualization of stromal cells via PAR2-HMGB1-ADAM17-HB-EGF from luminal epithelium.</p>}},
  author       = {{Li, Yue and Chen, Si Ting and He, Yu Ying and Li, Bo and Yang, Chen and Yang, Zhen Shan and Yang, Zeng Ming}},
  issn         = {{1664-3224}},
  keywords     = {{decidualization; endometrium; HMGB1; mouse; sterile inflammation; uterus}},
  language     = {{eng}},
  month        = {{01}},
  publisher    = {{Frontiers Media S. A.}},
  series       = {{Frontiers in Immunology}},
  title        = {{The regulation and function of acetylated high-mobility group box 1 during implantation and decidualization}},
  url          = {{http://dx.doi.org/10.3389/fimmu.2023.1024706}},
  doi          = {{10.3389/fimmu.2023.1024706}},
  volume       = {{14}},
  year         = {{2023}},
}