Cargando…

RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence

RF amide-related peptide 3 (RFRP-3), a mammalian ortholog of gonadotropin-inhibitory hormone (GnIH), is identified to be a novel inhibitory endogenous neurohormonal peptide that regulates mammalian reproduction by binding with specific G protein-coupled receptors (GPRs) in various species. Herein, o...

Descripción completa

Detalles Bibliográficos
Autores principales: Xiong, Xianrong, Hu, Yulei, Pan, Bangting, Zhu, Yanjin, Fei, Xixi, Yang, Qinhui, Xie, Yumian, Xiong, Yan, Lan, Daoliang, Fu, Wei, Li, Jian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138887/
https://www.ncbi.nlm.nih.gov/pubmed/37108163
http://dx.doi.org/10.3390/ijms24087000
_version_ 1785032813630717952
author Xiong, Xianrong
Hu, Yulei
Pan, Bangting
Zhu, Yanjin
Fei, Xixi
Yang, Qinhui
Xie, Yumian
Xiong, Yan
Lan, Daoliang
Fu, Wei
Li, Jian
author_facet Xiong, Xianrong
Hu, Yulei
Pan, Bangting
Zhu, Yanjin
Fei, Xixi
Yang, Qinhui
Xie, Yumian
Xiong, Yan
Lan, Daoliang
Fu, Wei
Li, Jian
author_sort Xiong, Xianrong
collection PubMed
description RF amide-related peptide 3 (RFRP-3), a mammalian ortholog of gonadotropin-inhibitory hormone (GnIH), is identified to be a novel inhibitory endogenous neurohormonal peptide that regulates mammalian reproduction by binding with specific G protein-coupled receptors (GPRs) in various species. Herein, our objectives were to explore the biological functions of exogenous RFRP-3 on the apoptosis and steroidogenesis of yak cumulus cells (CCs) and the developmental potential of yak oocytes. The spatiotemporal expression pattern and localization of GnIH/RFRP-3 and its receptor GPR147 were determined in follicles and CCs. The effects of RFRP-3 on the proliferation and apoptosis of yak CCs were initially estimated by EdU assay and TUNEL staining. We confirmed that high-dose (10(−6) mol/L) RFRP-3 suppressed viability and increased the apoptotic rates, implying that RFRP-3 could repress proliferation and induce apoptosis. Subsequently, the concentrations of E(2) and P(4) were significantly lower with 10(−6) mol/L RFRP-3 treatment than that of the control counterparts, which indicated that the steroidogenesis of CCs was impaired after RFRP-3 treatment. Compared with the control group, 10(−6) mol/L RFRP-3 treatment decreased the maturation of yak oocytes efficiently and subsequent developmental potential. We sought to explore the potential mechanism of RFRP-3-induced apoptosis and steroidogenesis, so we observed the levels of apoptotic regulatory factors and hormone synthesis-related factors in yak CCs after RFRP-3 treatment. Our results indicated that RFRP-3 dose-dependently elevated the expression of apoptosis markers (Caspase and Bax), whereas the expression levels of steroidogenesis-related factors (LHR, StAR, 3β-HSD) were downregulated in a dose-dependent manner. However, all these effects were moderated by cotreatment with inhibitory RF9 of GPR147. These results demonstrated that RFRP-3 adjusted the expression of apoptotic and steroidogenic regulatory factors to induce apoptosis of CCs, probably through binding with its receptor GPR147, as well as compromised oocyte maturation and developmental potential. This research revealed the expression profiles of GnIH/RFRP-3 and GPR147 in yak CCs and supported a conserved inhibitory action on oocyte developmental competence.
format Online
Article
Text
id pubmed-10138887
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101388872023-04-28 RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence Xiong, Xianrong Hu, Yulei Pan, Bangting Zhu, Yanjin Fei, Xixi Yang, Qinhui Xie, Yumian Xiong, Yan Lan, Daoliang Fu, Wei Li, Jian Int J Mol Sci Article RF amide-related peptide 3 (RFRP-3), a mammalian ortholog of gonadotropin-inhibitory hormone (GnIH), is identified to be a novel inhibitory endogenous neurohormonal peptide that regulates mammalian reproduction by binding with specific G protein-coupled receptors (GPRs) in various species. Herein, our objectives were to explore the biological functions of exogenous RFRP-3 on the apoptosis and steroidogenesis of yak cumulus cells (CCs) and the developmental potential of yak oocytes. The spatiotemporal expression pattern and localization of GnIH/RFRP-3 and its receptor GPR147 were determined in follicles and CCs. The effects of RFRP-3 on the proliferation and apoptosis of yak CCs were initially estimated by EdU assay and TUNEL staining. We confirmed that high-dose (10(−6) mol/L) RFRP-3 suppressed viability and increased the apoptotic rates, implying that RFRP-3 could repress proliferation and induce apoptosis. Subsequently, the concentrations of E(2) and P(4) were significantly lower with 10(−6) mol/L RFRP-3 treatment than that of the control counterparts, which indicated that the steroidogenesis of CCs was impaired after RFRP-3 treatment. Compared with the control group, 10(−6) mol/L RFRP-3 treatment decreased the maturation of yak oocytes efficiently and subsequent developmental potential. We sought to explore the potential mechanism of RFRP-3-induced apoptosis and steroidogenesis, so we observed the levels of apoptotic regulatory factors and hormone synthesis-related factors in yak CCs after RFRP-3 treatment. Our results indicated that RFRP-3 dose-dependently elevated the expression of apoptosis markers (Caspase and Bax), whereas the expression levels of steroidogenesis-related factors (LHR, StAR, 3β-HSD) were downregulated in a dose-dependent manner. However, all these effects were moderated by cotreatment with inhibitory RF9 of GPR147. These results demonstrated that RFRP-3 adjusted the expression of apoptotic and steroidogenic regulatory factors to induce apoptosis of CCs, probably through binding with its receptor GPR147, as well as compromised oocyte maturation and developmental potential. This research revealed the expression profiles of GnIH/RFRP-3 and GPR147 in yak CCs and supported a conserved inhibitory action on oocyte developmental competence. MDPI 2023-04-10 /pmc/articles/PMC10138887/ /pubmed/37108163 http://dx.doi.org/10.3390/ijms24087000 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xiong, Xianrong
Hu, Yulei
Pan, Bangting
Zhu, Yanjin
Fei, Xixi
Yang, Qinhui
Xie, Yumian
Xiong, Yan
Lan, Daoliang
Fu, Wei
Li, Jian
RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence
title RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence
title_full RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence
title_fullStr RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence
title_full_unstemmed RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence
title_short RFRP-3 Influences Apoptosis and Steroidogenesis of Yak Cumulus Cells and Compromises Oocyte Meiotic Maturation and Subsequent Developmental Competence
title_sort rfrp-3 influences apoptosis and steroidogenesis of yak cumulus cells and compromises oocyte meiotic maturation and subsequent developmental competence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138887/
https://www.ncbi.nlm.nih.gov/pubmed/37108163
http://dx.doi.org/10.3390/ijms24087000
work_keys_str_mv AT xiongxianrong rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT huyulei rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT panbangting rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT zhuyanjin rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT feixixi rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT yangqinhui rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT xieyumian rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT xiongyan rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT landaoliang rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT fuwei rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence
AT lijian rfrp3influencesapoptosisandsteroidogenesisofyakcumuluscellsandcompromisesoocytemeioticmaturationandsubsequentdevelopmentalcompetence