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Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)

Mammalian females are endowed with a finite number of primordial follicles at birth. Immediately following formation of the primordial follicle pool, cohorts of follicles are either culled from the ovary or are recruited to grow until the primordial follicle population is depleted. The majority of o...

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Autores principales: Brown, Caitlin, LaRocca, Jessica, Pietruska, Jodie, Ota, Melissa, Anderson, Linnea, Duncan Smith, Stuart, Weston, Paula, Rasoulpour, Teresa, Hixon, Mary L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6058744/
https://www.ncbi.nlm.nih.gov/pubmed/19794155
http://dx.doi.org/10.1095/biolreprod.109.077925
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author Brown, Caitlin
LaRocca, Jessica
Pietruska, Jodie
Ota, Melissa
Anderson, Linnea
Duncan Smith, Stuart
Weston, Paula
Rasoulpour, Teresa
Hixon, Mary L.
author_facet Brown, Caitlin
LaRocca, Jessica
Pietruska, Jodie
Ota, Melissa
Anderson, Linnea
Duncan Smith, Stuart
Weston, Paula
Rasoulpour, Teresa
Hixon, Mary L.
author_sort Brown, Caitlin
collection PubMed
description Mammalian females are endowed with a finite number of primordial follicles at birth. Immediately following formation of the primordial follicle pool, cohorts of follicles are either culled from the ovary or are recruited to grow until the primordial follicle population is depleted. The majority of ovarian follicles, including the oocytes, undergo atresia through apoptotic cell death. As PKBalpha/Akt1 is known to regulate apoptosis, we asked whether Akt1 functioned in the regulation of folliculogenesis in the ovary. Akt1(−/−) females display reduced fertility and abnormal estrous cyclicity. At Postnatal Day (PND) 25, Akt1(−/−) ovaries possessed a reduced number of growing antral follicles, significantly larger primary and secondary oocytes, and an increase in the number of degenerate oocytes. By PND90, there was a significant decrease in the number of primordial follicles in Akt1(−/−) ovaries relative to Akt1(+/+). In vivo granulosa cell proliferation was reduced, as were expression levels of Kitl and Bcl2l1, two factors associated with granulosa cell proliferation/survival. No compensation was observed by Akt2 or Akt3 at the mRNA/protein level. Significantly higher serum LH and trends for lower FSH and higher inhibin A and lower inhibin B relative to Akt1(+/+) females were observed in Akt1(−/−) females. Exposure to exogenous gonadotropins resulted in an increase in the number of secondary follicles in Akt1(−/−) ovaries, but few mature follicles. Collectively, our results suggest that PKBalpha/Akt1 plays an instrumental role in the regulation of the growth and maturation of the ovary, and that the loss of PKBalpha/Akt1 results in premature ovarian failure.
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spelling pubmed-60587442018-08-08 Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1) Brown, Caitlin LaRocca, Jessica Pietruska, Jodie Ota, Melissa Anderson, Linnea Duncan Smith, Stuart Weston, Paula Rasoulpour, Teresa Hixon, Mary L. Biol Reprod Research Article Mammalian females are endowed with a finite number of primordial follicles at birth. Immediately following formation of the primordial follicle pool, cohorts of follicles are either culled from the ovary or are recruited to grow until the primordial follicle population is depleted. The majority of ovarian follicles, including the oocytes, undergo atresia through apoptotic cell death. As PKBalpha/Akt1 is known to regulate apoptosis, we asked whether Akt1 functioned in the regulation of folliculogenesis in the ovary. Akt1(−/−) females display reduced fertility and abnormal estrous cyclicity. At Postnatal Day (PND) 25, Akt1(−/−) ovaries possessed a reduced number of growing antral follicles, significantly larger primary and secondary oocytes, and an increase in the number of degenerate oocytes. By PND90, there was a significant decrease in the number of primordial follicles in Akt1(−/−) ovaries relative to Akt1(+/+). In vivo granulosa cell proliferation was reduced, as were expression levels of Kitl and Bcl2l1, two factors associated with granulosa cell proliferation/survival. No compensation was observed by Akt2 or Akt3 at the mRNA/protein level. Significantly higher serum LH and trends for lower FSH and higher inhibin A and lower inhibin B relative to Akt1(+/+) females were observed in Akt1(−/−) females. Exposure to exogenous gonadotropins resulted in an increase in the number of secondary follicles in Akt1(−/−) ovaries, but few mature follicles. Collectively, our results suggest that PKBalpha/Akt1 plays an instrumental role in the regulation of the growth and maturation of the ovary, and that the loss of PKBalpha/Akt1 results in premature ovarian failure. Oxford University Press 2010-02-01 /pmc/articles/PMC6058744/ /pubmed/19794155 http://dx.doi.org/10.1095/biolreprod.109.077925 Text en © 2010 by the Society for the Study of Reproduction, Inc. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial reuse, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com (http://journals.permissions@oup.com)
spellingShingle Research Article
Brown, Caitlin
LaRocca, Jessica
Pietruska, Jodie
Ota, Melissa
Anderson, Linnea
Duncan Smith, Stuart
Weston, Paula
Rasoulpour, Teresa
Hixon, Mary L.
Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)
title Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)
title_full Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)
title_fullStr Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)
title_full_unstemmed Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)
title_short Subfertility Caused by Altered Follicular Development and Oocyte Growth in Female Mice Lacking PKBalpha/Akt1(1)
title_sort subfertility caused by altered follicular development and oocyte growth in female mice lacking pkbalpha/akt1(1)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6058744/
https://www.ncbi.nlm.nih.gov/pubmed/19794155
http://dx.doi.org/10.1095/biolreprod.109.077925
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