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Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods

Following early embryonic germ cell migration, oocytes are surrounded by somatic cells and remain arrested at diplotene stage until luteinizing hormone (LH) surge. Strict regulation of both meiotic arrest and meiotic resumption during dormant stage are critical for future fertility. Inter-cellular s...

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Autores principales: Celik, Onder, Celik, Nilufer, Gungor, Sami, Haberal, Esra Tustas, Aydin, Suleyman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Libertas Academica 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4577271/
https://www.ncbi.nlm.nih.gov/pubmed/26417205
http://dx.doi.org/10.4137/BCI.S28596
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author Celik, Onder
Celik, Nilufer
Gungor, Sami
Haberal, Esra Tustas
Aydin, Suleyman
author_facet Celik, Onder
Celik, Nilufer
Gungor, Sami
Haberal, Esra Tustas
Aydin, Suleyman
author_sort Celik, Onder
collection PubMed
description Following early embryonic germ cell migration, oocytes are surrounded by somatic cells and remain arrested at diplotene stage until luteinizing hormone (LH) surge. Strict regulation of both meiotic arrest and meiotic resumption during dormant stage are critical for future fertility. Inter-cellular signaling system between the somatic compartment and oocyte regulates these meiotic events and determines the follicle quality. As well as the collected number of eggs, their qualities are also important for in vitro fertilization (IVF) outcome. In spontaneous and IVF cycles, germinal vesicle (GV)–stage oocytes, premature GV breakdown, and persistence of first meiotic arrest limit the reproductive performance. Likewise, both women with premature ovarian aging and young cancer women are undergoing chemoradiotherapy under the risk of follicle loss because of unregulated meiotic events. Understanding of oocyte meiotic events is therefore critical for the prevention of functional ovarian reserve. High levels of cyclic guanosine monophophate (cGMP), cyclic adenosine monophophate (cAMP) and low phosphodiesterase (PDE) 3A enzyme activity inside the oocyte are responsible for maintaining of meiotic arrest before the LH surge. cGMP is produced in the somatic compartment, and natriuretic peptide precursor C (Nppc) and natriuretic peptide receptor 2 (Npr2) regulate its production. cGMP diffuses into the oocyte and reduces the PDE3A activity, which inhibits the conversion of cAMP to the 5′AMP, and cAMP levels are enhanced. In addition, oocyte itself has the ability to produce cAMP. Taken together, accumulation of cAMP inside the oocyte induces protein kinase activity, which leads to the inhibition of maturation-promoting factor and meiotic arrest also continues. By stimulating the expression of epidermal growth factor, LH inhibits the Nppc/Npr2 system, blocks cGMP synthesis, and initiates meiotic resumption. Oocytes lacking the functional of this pathway may lead to persistence of the GV oocyte, which reduces the number of good quality eggs. Selective regulation of somatic cell signals and oocyte meiotic events enhance progress in fertility preservation methods, which may give us the opportunity to prevent follicle loss in prematurely aging women and young women with cancer are undergoing chemoradiotherapy.
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spelling pubmed-45772712015-09-28 Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods Celik, Onder Celik, Nilufer Gungor, Sami Haberal, Esra Tustas Aydin, Suleyman Biochem Insights Review Following early embryonic germ cell migration, oocytes are surrounded by somatic cells and remain arrested at diplotene stage until luteinizing hormone (LH) surge. Strict regulation of both meiotic arrest and meiotic resumption during dormant stage are critical for future fertility. Inter-cellular signaling system between the somatic compartment and oocyte regulates these meiotic events and determines the follicle quality. As well as the collected number of eggs, their qualities are also important for in vitro fertilization (IVF) outcome. In spontaneous and IVF cycles, germinal vesicle (GV)–stage oocytes, premature GV breakdown, and persistence of first meiotic arrest limit the reproductive performance. Likewise, both women with premature ovarian aging and young cancer women are undergoing chemoradiotherapy under the risk of follicle loss because of unregulated meiotic events. Understanding of oocyte meiotic events is therefore critical for the prevention of functional ovarian reserve. High levels of cyclic guanosine monophophate (cGMP), cyclic adenosine monophophate (cAMP) and low phosphodiesterase (PDE) 3A enzyme activity inside the oocyte are responsible for maintaining of meiotic arrest before the LH surge. cGMP is produced in the somatic compartment, and natriuretic peptide precursor C (Nppc) and natriuretic peptide receptor 2 (Npr2) regulate its production. cGMP diffuses into the oocyte and reduces the PDE3A activity, which inhibits the conversion of cAMP to the 5′AMP, and cAMP levels are enhanced. In addition, oocyte itself has the ability to produce cAMP. Taken together, accumulation of cAMP inside the oocyte induces protein kinase activity, which leads to the inhibition of maturation-promoting factor and meiotic arrest also continues. By stimulating the expression of epidermal growth factor, LH inhibits the Nppc/Npr2 system, blocks cGMP synthesis, and initiates meiotic resumption. Oocytes lacking the functional of this pathway may lead to persistence of the GV oocyte, which reduces the number of good quality eggs. Selective regulation of somatic cell signals and oocyte meiotic events enhance progress in fertility preservation methods, which may give us the opportunity to prevent follicle loss in prematurely aging women and young women with cancer are undergoing chemoradiotherapy. Libertas Academica 2015-09-20 /pmc/articles/PMC4577271/ /pubmed/26417205 http://dx.doi.org/10.4137/BCI.S28596 Text en © 2015 the author(s), publisher and licensee Libertas Academica Ltd. This is an open-access article distributed under the terms of the Creative Commons CC -BY-NC 3.0 License.
spellingShingle Review
Celik, Onder
Celik, Nilufer
Gungor, Sami
Haberal, Esra Tustas
Aydin, Suleyman
Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods
title Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods
title_full Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods
title_fullStr Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods
title_full_unstemmed Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods
title_short Selective Regulation of Oocyte Meiotic Events Enhances Progress in Fertility Preservation Methods
title_sort selective regulation of oocyte meiotic events enhances progress in fertility preservation methods
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4577271/
https://www.ncbi.nlm.nih.gov/pubmed/26417205
http://dx.doi.org/10.4137/BCI.S28596
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