Cargando…

Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)

Apoptosis plays a key role in the effective removal of excessive and defective germ cells, which is essential for sequential hermaphroditism and sex change in vertebrates. The ricefield eel, Monopterus albus is a protogynous hermaphroditic fish that undergoes a sequential sex change from female to m...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Zhi, Chen, Qiqi, He, Liang, Xiong, Jinxin, Gao, Kuo, Lai, Bolin, Zheng, Li, Pu, Yong, Jiao, Yuanyuan, Ma, Zhijun, Tang, Ziting, Zhang, Mingwang, Yang, Deying, Yan, Taiming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9503458/
https://www.ncbi.nlm.nih.gov/pubmed/36142467
http://dx.doi.org/10.3390/ijms231810555
_version_ 1784795968222265344
author He, Zhi
Chen, Qiqi
He, Liang
Xiong, Jinxin
Gao, Kuo
Lai, Bolin
Zheng, Li
Pu, Yong
Jiao, Yuanyuan
Ma, Zhijun
Tang, Ziting
Zhang, Mingwang
Yang, Deying
Yan, Taiming
author_facet He, Zhi
Chen, Qiqi
He, Liang
Xiong, Jinxin
Gao, Kuo
Lai, Bolin
Zheng, Li
Pu, Yong
Jiao, Yuanyuan
Ma, Zhijun
Tang, Ziting
Zhang, Mingwang
Yang, Deying
Yan, Taiming
author_sort He, Zhi
collection PubMed
description Apoptosis plays a key role in the effective removal of excessive and defective germ cells, which is essential for sequential hermaphroditism and sex change in vertebrates. The ricefield eel, Monopterus albus is a protogynous hermaphroditic fish that undergoes a sequential sex change from female to male. Previous studies have demonstrated that apoptosis is involved in sex change in M. albus. However, the apoptotic signaling pathway is unclear. In the current study, we explored the underlying mechanism of apoptosis during gonadal development and focused on the role of the mitochondrial apoptosis signaling pathway in sex change in M. albus. Flow cytometry was performed to detect apoptosis in gonads at five sexual stages and ovary tissues exposed to hydrogen peroxide (H(2)O(2)) in vitro. Then the expression patterns of key genes and proteins in the mitochondrial pathway, death receptor pathway and endoplasmic reticulum (ER) pathway were examined. The results showed that the apoptosis rate was significantly increased in the early intersexual stage and then decreased with the natural sex change from female to male. Quantitative real-time PCR revealed that bax, tnfr1, and calpain were mainly expressed in the five stages. ELISA demonstrated that the relative content of cytochrome-c (cyt-c) in the mitochondrial pathway was significantly higher than that of caspase8 and caspase12, with a peak in the early intersexual stage, while the levels of caspase8 and caspase12 peaked in the late intersexual stage. Interestingly, the Pearson’s coefficient between cyt-c and the apoptosis rate was 0.705, which suggests that these factors are closely related during the gonadal development of M. albus. Furthermore, the cyt-c signal was found to be increased in the intersexual stage by immunohistochemistry. After incubation with H(2)O(2), the mRNA expression of mitochondrial pathway molecules such as bax, apaf-1, and caspase3 increased in ovary tissues. In conclusion, the present results suggest that the mitochondrial apoptotic pathway may play a more important role than the other apoptotic pathways in sex change in M. albus.
format Online
Article
Text
id pubmed-9503458
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-95034582022-09-24 Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus) He, Zhi Chen, Qiqi He, Liang Xiong, Jinxin Gao, Kuo Lai, Bolin Zheng, Li Pu, Yong Jiao, Yuanyuan Ma, Zhijun Tang, Ziting Zhang, Mingwang Yang, Deying Yan, Taiming Int J Mol Sci Article Apoptosis plays a key role in the effective removal of excessive and defective germ cells, which is essential for sequential hermaphroditism and sex change in vertebrates. The ricefield eel, Monopterus albus is a protogynous hermaphroditic fish that undergoes a sequential sex change from female to male. Previous studies have demonstrated that apoptosis is involved in sex change in M. albus. However, the apoptotic signaling pathway is unclear. In the current study, we explored the underlying mechanism of apoptosis during gonadal development and focused on the role of the mitochondrial apoptosis signaling pathway in sex change in M. albus. Flow cytometry was performed to detect apoptosis in gonads at five sexual stages and ovary tissues exposed to hydrogen peroxide (H(2)O(2)) in vitro. Then the expression patterns of key genes and proteins in the mitochondrial pathway, death receptor pathway and endoplasmic reticulum (ER) pathway were examined. The results showed that the apoptosis rate was significantly increased in the early intersexual stage and then decreased with the natural sex change from female to male. Quantitative real-time PCR revealed that bax, tnfr1, and calpain were mainly expressed in the five stages. ELISA demonstrated that the relative content of cytochrome-c (cyt-c) in the mitochondrial pathway was significantly higher than that of caspase8 and caspase12, with a peak in the early intersexual stage, while the levels of caspase8 and caspase12 peaked in the late intersexual stage. Interestingly, the Pearson’s coefficient between cyt-c and the apoptosis rate was 0.705, which suggests that these factors are closely related during the gonadal development of M. albus. Furthermore, the cyt-c signal was found to be increased in the intersexual stage by immunohistochemistry. After incubation with H(2)O(2), the mRNA expression of mitochondrial pathway molecules such as bax, apaf-1, and caspase3 increased in ovary tissues. In conclusion, the present results suggest that the mitochondrial apoptotic pathway may play a more important role than the other apoptotic pathways in sex change in M. albus. MDPI 2022-09-12 /pmc/articles/PMC9503458/ /pubmed/36142467 http://dx.doi.org/10.3390/ijms231810555 Text en © 2022 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
He, Zhi
Chen, Qiqi
He, Liang
Xiong, Jinxin
Gao, Kuo
Lai, Bolin
Zheng, Li
Pu, Yong
Jiao, Yuanyuan
Ma, Zhijun
Tang, Ziting
Zhang, Mingwang
Yang, Deying
Yan, Taiming
Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)
title Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)
title_full Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)
title_fullStr Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)
title_full_unstemmed Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)
title_short Cyt-C Mediated Mitochondrial Pathway Plays an Important Role in Oocyte Apoptosis in Ricefield Eel (Monopterus albus)
title_sort cyt-c mediated mitochondrial pathway plays an important role in oocyte apoptosis in ricefield eel (monopterus albus)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9503458/
https://www.ncbi.nlm.nih.gov/pubmed/36142467
http://dx.doi.org/10.3390/ijms231810555
work_keys_str_mv AT hezhi cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT chenqiqi cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT heliang cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT xiongjinxin cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT gaokuo cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT laibolin cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT zhengli cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT puyong cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT jiaoyuanyuan cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT mazhijun cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT tangziting cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT zhangmingwang cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT yangdeying cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus
AT yantaiming cytcmediatedmitochondrialpathwayplaysanimportantroleinoocyteapoptosisinricefieldeelmonopterusalbus