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Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss

Inhibins are members of the transforming growth factor-β family, composed of a common α-subunit disulfide-linked to 1 of 2 β-subunits (βA in inhibin A or βB in inhibin B). Gonadal-derived inhibin A and B act in an endocrine manner to suppress the synthesis of follicle-stimulating hormone (FSH) by pi...

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Autores principales: Walton, Kelly L, Goney, Monica P, Peppas, Zoe, Stringer, Jessica M, Winship, Amy, Hutt, Karla, Goodchild, Georgia, Maskey, Shreya, Chan, Karen L, Brûlé, Emilie, Bernard, Daniel J, Stocker, William A, Harrison, Craig A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9272799/
https://www.ncbi.nlm.nih.gov/pubmed/35255139
http://dx.doi.org/10.1210/endocr/bqac025
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author Walton, Kelly L
Goney, Monica P
Peppas, Zoe
Stringer, Jessica M
Winship, Amy
Hutt, Karla
Goodchild, Georgia
Maskey, Shreya
Chan, Karen L
Brûlé, Emilie
Bernard, Daniel J
Stocker, William A
Harrison, Craig A
author_facet Walton, Kelly L
Goney, Monica P
Peppas, Zoe
Stringer, Jessica M
Winship, Amy
Hutt, Karla
Goodchild, Georgia
Maskey, Shreya
Chan, Karen L
Brûlé, Emilie
Bernard, Daniel J
Stocker, William A
Harrison, Craig A
author_sort Walton, Kelly L
collection PubMed
description Inhibins are members of the transforming growth factor-β family, composed of a common α-subunit disulfide-linked to 1 of 2 β-subunits (βA in inhibin A or βB in inhibin B). Gonadal-derived inhibin A and B act in an endocrine manner to suppress the synthesis of follicle-stimulating hormone (FSH) by pituitary gonadotrope cells. Roles for inhibins beyond the pituitary, however, have proven difficult to delineate because deletion of the inhibin α-subunit gene (Inha) results in unconstrained expression of activin A and activin B (homodimers of inhibin β-subunits), which contribute to gonadal tumorigenesis and lethal cachectic wasting. Here, we generated mice with a single point mutation (Arg(233)Ala) in Inha that prevents proteolytic processing and the formation of bioactive inhibin. In vitro, this mutation blocked inhibin maturation and bioactivity, without perturbing activin production. Serum FSH levels were elevated 2- to 3-fold in Inha(R233A/R233A) mice due to the loss of negative feedback from inhibins, but no pathological increase in circulating activins was observed. While inactivation of inhibin A and B had no discernible effect on male reproduction, female Inha(R233A/R233A) mice had increased FSH-dependent follicle development and enhanced natural ovulation rates. Nevertheless, inhibin inactivation resulted in significant embryo-fetal resorptions and severe subfertility and was associated with disrupted maternal ovarian function. Intriguingly, heterozygous Inha(+/R233A) females had significantly enhanced fecundity, relative to wild-type littermates. These studies have revealed novel effects of inhibins in the establishment and maintenance of pregnancy and demonstrated that partial inactivation of inhibin A/B is an attractive approach for enhancing female fertility.
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spelling pubmed-92727992022-07-11 Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss Walton, Kelly L Goney, Monica P Peppas, Zoe Stringer, Jessica M Winship, Amy Hutt, Karla Goodchild, Georgia Maskey, Shreya Chan, Karen L Brûlé, Emilie Bernard, Daniel J Stocker, William A Harrison, Craig A Endocrinology Research Article Inhibins are members of the transforming growth factor-β family, composed of a common α-subunit disulfide-linked to 1 of 2 β-subunits (βA in inhibin A or βB in inhibin B). Gonadal-derived inhibin A and B act in an endocrine manner to suppress the synthesis of follicle-stimulating hormone (FSH) by pituitary gonadotrope cells. Roles for inhibins beyond the pituitary, however, have proven difficult to delineate because deletion of the inhibin α-subunit gene (Inha) results in unconstrained expression of activin A and activin B (homodimers of inhibin β-subunits), which contribute to gonadal tumorigenesis and lethal cachectic wasting. Here, we generated mice with a single point mutation (Arg(233)Ala) in Inha that prevents proteolytic processing and the formation of bioactive inhibin. In vitro, this mutation blocked inhibin maturation and bioactivity, without perturbing activin production. Serum FSH levels were elevated 2- to 3-fold in Inha(R233A/R233A) mice due to the loss of negative feedback from inhibins, but no pathological increase in circulating activins was observed. While inactivation of inhibin A and B had no discernible effect on male reproduction, female Inha(R233A/R233A) mice had increased FSH-dependent follicle development and enhanced natural ovulation rates. Nevertheless, inhibin inactivation resulted in significant embryo-fetal resorptions and severe subfertility and was associated with disrupted maternal ovarian function. Intriguingly, heterozygous Inha(+/R233A) females had significantly enhanced fecundity, relative to wild-type littermates. These studies have revealed novel effects of inhibins in the establishment and maintenance of pregnancy and demonstrated that partial inactivation of inhibin A/B is an attractive approach for enhancing female fertility. Oxford University Press 2022-03-07 /pmc/articles/PMC9272799/ /pubmed/35255139 http://dx.doi.org/10.1210/endocr/bqac025 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the Endocrine Society. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Walton, Kelly L
Goney, Monica P
Peppas, Zoe
Stringer, Jessica M
Winship, Amy
Hutt, Karla
Goodchild, Georgia
Maskey, Shreya
Chan, Karen L
Brûlé, Emilie
Bernard, Daniel J
Stocker, William A
Harrison, Craig A
Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss
title Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss
title_full Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss
title_fullStr Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss
title_full_unstemmed Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss
title_short Inhibin Inactivation in Female Mice Leads to Elevated FSH Levels, Ovarian Overstimulation, and Pregnancy Loss
title_sort inhibin inactivation in female mice leads to elevated fsh levels, ovarian overstimulation, and pregnancy loss
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9272799/
https://www.ncbi.nlm.nih.gov/pubmed/35255139
http://dx.doi.org/10.1210/endocr/bqac025
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