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Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice

Because VEGFA has been implicated in follicle development, the objective of this study was to determine the effects of granulosa- and germ cell-specific VEGFA loss on ovarian morphogenesis, function, and female fertility. pDmrt1-Cre mice were mated to floxed VEGFA mice to develop granulosa-/germ cel...

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Autores principales: Sargent, Kevin M., Lu, Ningxia, Clopton, Debra T., Pohlmeier, William E., Brauer, Vanessa M., Ferrara, Napoleone, Silversides, David W., Cupp, Andrea S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4320103/
https://www.ncbi.nlm.nih.gov/pubmed/25658474
http://dx.doi.org/10.1371/journal.pone.0116332
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author Sargent, Kevin M.
Lu, Ningxia
Clopton, Debra T.
Pohlmeier, William E.
Brauer, Vanessa M.
Ferrara, Napoleone
Silversides, David W.
Cupp, Andrea S.
author_facet Sargent, Kevin M.
Lu, Ningxia
Clopton, Debra T.
Pohlmeier, William E.
Brauer, Vanessa M.
Ferrara, Napoleone
Silversides, David W.
Cupp, Andrea S.
author_sort Sargent, Kevin M.
collection PubMed
description Because VEGFA has been implicated in follicle development, the objective of this study was to determine the effects of granulosa- and germ cell-specific VEGFA loss on ovarian morphogenesis, function, and female fertility. pDmrt1-Cre mice were mated to floxed VEGFA mice to develop granulosa-/germ cell-specific knockouts (pDmrt1-Cre;Vegfa (-/-)). The time from mating to first parturition was increased when pDmrt1-Cre;Vegfa (-/-) females were mated to control males (P = 0.0008) and tended to be longer for heterozygous females (P < 0.07). Litter size was reduced for pDmrt1-Cre;Vegfa (-/-) females (P < 0.007). The time between the first and second parturitions was also increased for heterozygous females (P < 0.04) and tended to be increased for pDmrt1-Cre;Vegfa (-/-) females (P < 0.07). pDmrt1-Cre;Vegfa (-/-) females had smaller ovaries (P < 0.04), reduced plasma estradiol (P < 0.007), fewer developing follicles (P < 0.008) and tended to have fewer corpora lutea (P < 0.08). Expression of Igf1r was reduced (P < 0.05); expression of Foxo3a tended to be increased (P < 0.06); and both Fshr (P < 0.1) and Sirt6 tended to be reduced (P < 0.06) in pDmrt1-Cre;Vegfa (-/-) ovaries. To compare VEGFA knockouts, we generated Amhr2-Cre;Vegfa (-/-) mice that required more time from mating to first parturition (P < 0.003) with variable ovarian size. Both lines had more apoptotic granulosa cells, and vascular staining did not appear different. Taken together these data indicate that the loss of all VEGFA isoforms in granulosa/germ cells (proangiogenic and antiangiogenic) causes subfertility by arresting follicular development, resulting in reduced ovulation rate and fewer pups per litter.
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spelling pubmed-43201032015-02-18 Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice Sargent, Kevin M. Lu, Ningxia Clopton, Debra T. Pohlmeier, William E. Brauer, Vanessa M. Ferrara, Napoleone Silversides, David W. Cupp, Andrea S. PLoS One Research Article Because VEGFA has been implicated in follicle development, the objective of this study was to determine the effects of granulosa- and germ cell-specific VEGFA loss on ovarian morphogenesis, function, and female fertility. pDmrt1-Cre mice were mated to floxed VEGFA mice to develop granulosa-/germ cell-specific knockouts (pDmrt1-Cre;Vegfa (-/-)). The time from mating to first parturition was increased when pDmrt1-Cre;Vegfa (-/-) females were mated to control males (P = 0.0008) and tended to be longer for heterozygous females (P < 0.07). Litter size was reduced for pDmrt1-Cre;Vegfa (-/-) females (P < 0.007). The time between the first and second parturitions was also increased for heterozygous females (P < 0.04) and tended to be increased for pDmrt1-Cre;Vegfa (-/-) females (P < 0.07). pDmrt1-Cre;Vegfa (-/-) females had smaller ovaries (P < 0.04), reduced plasma estradiol (P < 0.007), fewer developing follicles (P < 0.008) and tended to have fewer corpora lutea (P < 0.08). Expression of Igf1r was reduced (P < 0.05); expression of Foxo3a tended to be increased (P < 0.06); and both Fshr (P < 0.1) and Sirt6 tended to be reduced (P < 0.06) in pDmrt1-Cre;Vegfa (-/-) ovaries. To compare VEGFA knockouts, we generated Amhr2-Cre;Vegfa (-/-) mice that required more time from mating to first parturition (P < 0.003) with variable ovarian size. Both lines had more apoptotic granulosa cells, and vascular staining did not appear different. Taken together these data indicate that the loss of all VEGFA isoforms in granulosa/germ cells (proangiogenic and antiangiogenic) causes subfertility by arresting follicular development, resulting in reduced ovulation rate and fewer pups per litter. Public Library of Science 2015-02-06 /pmc/articles/PMC4320103/ /pubmed/25658474 http://dx.doi.org/10.1371/journal.pone.0116332 Text en © 2015 Sargent et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sargent, Kevin M.
Lu, Ningxia
Clopton, Debra T.
Pohlmeier, William E.
Brauer, Vanessa M.
Ferrara, Napoleone
Silversides, David W.
Cupp, Andrea S.
Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice
title Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice
title_full Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice
title_fullStr Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice
title_full_unstemmed Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice
title_short Loss of Vascular Endothelial Growth Factor A (VEGFA) Isoforms in Granulosa Cells Using pDmrt-1-Cre or Amhr2-Cre Reduces Fertility by Arresting Follicular Development and by Reducing Litter Size in Female Mice
title_sort loss of vascular endothelial growth factor a (vegfa) isoforms in granulosa cells using pdmrt-1-cre or amhr2-cre reduces fertility by arresting follicular development and by reducing litter size in female mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4320103/
https://www.ncbi.nlm.nih.gov/pubmed/25658474
http://dx.doi.org/10.1371/journal.pone.0116332
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