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A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling

Well-orchestrated maternal–fetal cross talk occurs via secreted ligands, interacting receptors, and coupled intracellular pathways between the conceptus and endometrium and is essential for successful embryo implantation. However, previous studies mostly focus on either the conceptus or the endometr...

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Autores principales: Yang, Qianying, Liu, Juan, Wang, Yue, Zhao, Wei, Wang, Wenjing, Cui, Jian, Yang, Jiajun, Yue, Yuan, Zhang, Shuai, Chu, Meiqiang, Lyu, Qingji, Ma, Lizhu, Tang, Yawen, Hu, Yupei, Miao, Kai, Zhao, Haichao, Tian, Jianhui, An, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8733267/
https://www.ncbi.nlm.nih.gov/pubmed/34861240
http://dx.doi.org/10.1016/j.jbc.2021.101456
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author Yang, Qianying
Liu, Juan
Wang, Yue
Zhao, Wei
Wang, Wenjing
Cui, Jian
Yang, Jiajun
Yue, Yuan
Zhang, Shuai
Chu, Meiqiang
Lyu, Qingji
Ma, Lizhu
Tang, Yawen
Hu, Yupei
Miao, Kai
Zhao, Haichao
Tian, Jianhui
An, Lei
author_facet Yang, Qianying
Liu, Juan
Wang, Yue
Zhao, Wei
Wang, Wenjing
Cui, Jian
Yang, Jiajun
Yue, Yuan
Zhang, Shuai
Chu, Meiqiang
Lyu, Qingji
Ma, Lizhu
Tang, Yawen
Hu, Yupei
Miao, Kai
Zhao, Haichao
Tian, Jianhui
An, Lei
author_sort Yang, Qianying
collection PubMed
description Well-orchestrated maternal–fetal cross talk occurs via secreted ligands, interacting receptors, and coupled intracellular pathways between the conceptus and endometrium and is essential for successful embryo implantation. However, previous studies mostly focus on either the conceptus or the endometrium in isolation. The lack of integrated analysis impedes our understanding of early maternal–fetal cross talk. Herein, focusing on ligand–receptor complexes and coupled pathways at the maternal–fetal interface in sheep, we provide the first comprehensive proteomic map of ligand–receptor pathway cascades essential for embryo implantation. We demonstrate that these cascades are associated with cell adhesion and invasion, redox homeostasis, and the immune response. Candidate interactions and their physiological roles were further validated by functional experiments. We reveal the physical interaction of albumin and claudin 4 and their roles in facilitating embryo attachment to endometrium. We also demonstrate a novel function of enhanced conceptus glycolysis in remodeling uterine receptivity by inducing endometrial histone lactylation, a newly identified histone modification. Results from in vitro and in vivo models supported the essential role of lactate in inducing endometrial H3K18 lactylation and in regulating redox homeostasis and apoptotic balance to ensure successful implantation. By reconstructing a map of potential ligand–receptor pathway cascades at the maternal–fetal interface, our study presents new concepts for understanding molecular and cellular mechanisms that fine-tune conceptus–endometrium cross talk during implantation. This provides more direct and accurate insights for developing potential clinical intervention strategies to improve pregnancy outcomes following both natural and assisted conception.
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spelling pubmed-87332672022-01-11 A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling Yang, Qianying Liu, Juan Wang, Yue Zhao, Wei Wang, Wenjing Cui, Jian Yang, Jiajun Yue, Yuan Zhang, Shuai Chu, Meiqiang Lyu, Qingji Ma, Lizhu Tang, Yawen Hu, Yupei Miao, Kai Zhao, Haichao Tian, Jianhui An, Lei J Biol Chem Research Article Well-orchestrated maternal–fetal cross talk occurs via secreted ligands, interacting receptors, and coupled intracellular pathways between the conceptus and endometrium and is essential for successful embryo implantation. However, previous studies mostly focus on either the conceptus or the endometrium in isolation. The lack of integrated analysis impedes our understanding of early maternal–fetal cross talk. Herein, focusing on ligand–receptor complexes and coupled pathways at the maternal–fetal interface in sheep, we provide the first comprehensive proteomic map of ligand–receptor pathway cascades essential for embryo implantation. We demonstrate that these cascades are associated with cell adhesion and invasion, redox homeostasis, and the immune response. Candidate interactions and their physiological roles were further validated by functional experiments. We reveal the physical interaction of albumin and claudin 4 and their roles in facilitating embryo attachment to endometrium. We also demonstrate a novel function of enhanced conceptus glycolysis in remodeling uterine receptivity by inducing endometrial histone lactylation, a newly identified histone modification. Results from in vitro and in vivo models supported the essential role of lactate in inducing endometrial H3K18 lactylation and in regulating redox homeostasis and apoptotic balance to ensure successful implantation. By reconstructing a map of potential ligand–receptor pathway cascades at the maternal–fetal interface, our study presents new concepts for understanding molecular and cellular mechanisms that fine-tune conceptus–endometrium cross talk during implantation. This provides more direct and accurate insights for developing potential clinical intervention strategies to improve pregnancy outcomes following both natural and assisted conception. American Society for Biochemistry and Molecular Biology 2021-12-01 /pmc/articles/PMC8733267/ /pubmed/34861240 http://dx.doi.org/10.1016/j.jbc.2021.101456 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Yang, Qianying
Liu, Juan
Wang, Yue
Zhao, Wei
Wang, Wenjing
Cui, Jian
Yang, Jiajun
Yue, Yuan
Zhang, Shuai
Chu, Meiqiang
Lyu, Qingji
Ma, Lizhu
Tang, Yawen
Hu, Yupei
Miao, Kai
Zhao, Haichao
Tian, Jianhui
An, Lei
A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
title A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
title_full A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
title_fullStr A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
title_full_unstemmed A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
title_short A proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
title_sort proteomic atlas of ligand–receptor interactions at the ovine maternal–fetal interface reveals the role of histone lactylation in uterine remodeling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8733267/
https://www.ncbi.nlm.nih.gov/pubmed/34861240
http://dx.doi.org/10.1016/j.jbc.2021.101456
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