Literature DB >> 29126263

Notch Signaling Regulates Differentiation and Steroidogenesis in Female Mouse Ovarian Granulosa Cells.

Rexxi D Prasasya1, Kelly E Mayo1.   

Abstract

The Notch pathway is a highly conserved juxtacrine signaling mechanism that is important for many cellular processes during development, including differentiation and proliferation. Although Notch is important during ovarian follicle formation and early development, its functions during the gonadotropin-dependent stages of follicle development are largely unexplored. We observed positive regulation of Notch activity and expression of Notch ligands and receptors following activation of the luteinizing hormone-receptor in prepubertal mouse ovary. JAG1, the most abundantly expressed Notch ligand in mouse ovary, revealed a striking shift in localization from oocytes to somatic cells following hormone stimulation. Using primary cultures of granulosa cells, we investigated the functions of Jag1 using small interfering RNA knockdown. The loss of JAG1 led to suppression of granulosa cell differentiation as marked by reduced expression of enzymes and factors involved in steroid biosynthesis, and in steroid secretion. Jag1 knockdown also resulted in enhanced cell proliferation. These phenotypes were replicated, although less robustly, following knockdown of the obligate canonical Notch transcription factor RBPJ. Intracellular signaling analysis revealed increased activation of the mitogenic phosphatidylinositol 3-kinase/protein kinase B and mitogen-activated protein kinase/extracellular signal-regulated kinase pathways following Notch knockdown, with a mitogen-activated protein kinase kinase inhibitor blocking the enhanced proliferation observed in Jag1 knockdown granulosa cells. Activation of YB-1, a known regulator of granulosa cell differentiation genes, was suppressed by Jag1 knockdown. Overall, this study reveals a role of Notch signaling in promoting the differentiation of preovulatory granulosa cells, adding to the diverse functions of Notch in the mammalian ovary.
Copyright © 2018 Endocrine Society.

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Year:  2018        PMID: 29126263      PMCID: PMC5761600          DOI: 10.1210/en.2017-00677

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  67 in total

Review 1.  Notch ligand endocytosis: mechanistic basis of signaling activity.

Authors:  Abdiwahab A Musse; Laurence Meloty-Kapella; Gerry Weinmaster
Journal:  Semin Cell Dev Biol       Date:  2012-01-24       Impact factor: 7.727

Review 2.  The molecular control of corpus luteum formation, function, and regression.

Authors:  Carlos Stocco; Carlos Telleria; Geula Gibori
Journal:  Endocr Rev       Date:  2006-10-31       Impact factor: 19.871

3.  NOTCH signaling in Sertoli cells regulates gonocyte fate.

Authors:  Thomas Xavier Garcia; Marie-Claude Hofmann
Journal:  Cell Cycle       Date:  2013-07-10       Impact factor: 4.534

4.  Regulation of expression of Vg and establishment of the dorsoventral compartment boundary in the wing imaginal disc by Suppressor of Hairless.

Authors:  Stefan Koelzer; Thomas Klein
Journal:  Dev Biol       Date:  2005-11-22       Impact factor: 3.582

Review 5.  Maturation of ovarian follicles: actions and interactions of pituitary and ovarian hormones on follicular cell differentiation.

Authors:  J S Richards
Journal:  Physiol Rev       Date:  1980-01       Impact factor: 37.312

6.  WNT4 is required for normal ovarian follicle development and female fertility.

Authors:  Alexandre Boyer; Evelyne Lapointe; Xiaofeng Zheng; Robert G Cowan; Huaiguang Li; Susan M Quirk; Francesco J DeMayo; JoAnne S Richards; Derek Boerboom
Journal:  FASEB J       Date:  2010-04-06       Impact factor: 5.191

7.  Repression by suppressor of hairless and activation by Notch are required to define a single row of single-minded expressing cells in the Drosophila embryo.

Authors:  V Morel; F Schweisguth
Journal:  Genes Dev       Date:  2000-02-01       Impact factor: 11.361

Review 8.  The role of Notch signaling in the mammalian ovary.

Authors:  Dallas A Vanorny; Kelly E Mayo
Journal:  Reproduction       Date:  2017-03-10       Impact factor: 3.906

9.  Follicle-Stimulating Hormone (FSH)-dependent Regulation of Extracellular Regulated Kinase (ERK) Phosphorylation by the Mitogen-activated Protein (MAP) Kinase Phosphatase MKP3.

Authors:  Elyse M Donaubauer; Nathan C Law; Mary E Hunzicker-Dunn
Journal:  J Biol Chem       Date:  2016-07-15       Impact factor: 5.157

10.  Mamld1 knockdown reduces testosterone production and Cyp17a1 expression in mouse Leydig tumor cells.

Authors:  Michiko Nakamura; Maki Fukami; Fumihiro Sugawa; Mami Miyado; Katsuya Nonomura; Tsutomu Ogata
Journal:  PLoS One       Date:  2011-04-29       Impact factor: 3.240

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  13 in total

1.  Activation of Notch Signaling by Oocytes and Jag1 in Mouse Ovarian Granulosa Cells.

Authors:  Nisan Hubbard; Rexxi D Prasasya; Kelly E Mayo
Journal:  Endocrinology       Date:  2019-12-01       Impact factor: 4.736

Review 2.  Updates on molecular and environmental determinants of luteal progesterone production.

Authors:  Natalie A DeWitt; Shannon Whirledge; Amanda N Kallen
Journal:  Mol Cell Endocrinol       Date:  2020-06-28       Impact factor: 4.102

Review 3.  Synthesis, Regulatory Factors, and Signaling Pathways of Estrogen in the Ovary.

Authors:  Chuyu Xiao; Jing Wang; Chunping Zhang
Journal:  Reprod Sci       Date:  2022-04-06       Impact factor: 3.060

Review 4.  Notch signaling in reproduction.

Authors:  Genna E Moldovan; Lucio Miele; Asgerally T Fazleabas
Journal:  Trends Endocrinol Metab       Date:  2021-09-01       Impact factor: 10.586

5.  Identification of new variants and candidate genes in women with familial premature ovarian insufficiency using whole-exome sequencing.

Authors:  R Morales; B Lledo; J A Ortiz; F M Lozano; E M Garcia; A Bernabeu; A Fuentes; R Bernabeu
Journal:  J Assist Reprod Genet       Date:  2022-10-08       Impact factor: 3.357

6.  Perivascular cells support folliculogenesis in the developing ovary.

Authors:  Shu-Yun Li; Bidur Bhandary; Xiaowei Gu; Tony DeFalco
Journal:  Proc Natl Acad Sci U S A       Date:  2022-10-04       Impact factor: 12.779

7.  Single-cell transcriptome reveals insights into the development and function of the zebrafish ovary.

Authors:  Michelle E Kossack; Matthew E McFaul; Yulong Liu; Lana N Christensen; Stefan Siebert; Sydney R Wyatt; Caramai N Kamei; Samuel Horst; Nayeli Arroyo; Iain A Drummond; Celina E Juliano; Bruce W Draper
Journal:  Elife       Date:  2022-05-19       Impact factor: 8.713

8.  Roles of the Notch Signaling Pathway in Ovarian Functioning.

Authors:  Shuhan Guo; Song Quan; Siyi Zou
Journal:  Reprod Sci       Date:  2021-05-18       Impact factor: 3.060

9.  Suppression of Notch Signaling Stimulates Progesterone Synthesis by Enhancing the Expression of NR5A2 and NR2F2 in Porcine Granulosa Cells.

Authors:  Rihong Guo; Fang Chen; Zhendan Shi
Journal:  Genes (Basel)       Date:  2020-01-22       Impact factor: 4.096

Review 10.  The Stemness of Human Ovarian Granulosa Cells and the Role of Resveratrol in the Differentiation of MSCs-A Review Based on Cellular and Molecular Knowledge.

Authors:  Malgorzata Jozkowiak; Greg Hutchings; Maurycy Jankowski; Katarzyna Kulcenty; Paul Mozdziak; Bartosz Kempisty; Robert Z Spaczynski; Hanna Piotrowska-Kempisty
Journal:  Cells       Date:  2020-06-07       Impact factor: 6.600

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