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Oogenesis defects in a mutant mouse model of oculodentodigital dysplasia
Dan Tong1, Deanne Colley, Renee Thoo
1Department of Physiology and Pharmacology, The University of Western Ontario, London, Canada.
Abstract:
The essential role of connexin43 (Cx43) during oogenesis has been demonstrated by the severe germ cell deficiency and arrested folliculogenesis observed in Cx43 knockout mice. Recently, another mutant mouse strain became available (Gja1(Jrt)/+) that carries the dominant loss-of-function Cx43 mutation, Cx43(G60S). Gja1(Jrt)/+ mice display features of the human disease oculodentodigital dysplasia (ODDD), which is caused by mutations in the GJA1 gene. We used this new mutant strain to study how a disease-linked Cx43 mutant affects oogenesis. We found that female mutant mice are subfertile with significantly reduced mating success and small litters. The phosphorylated species of the Cx43 protein are reduced in the mutant ovaries in association with impaired trafficking and assembly of gap junctions in the membranes of granulosa cells, confirming that the mutant protein acts dominantly on its wild-type counterpart. Correspondingly, although starting with a normal abundance of germ cells, ovaries of the mutant mice contain significantly fewer pre-ovulatory follicles and do not respond to superovulation by gonadotropins, which is at least partially the result of reduced proliferation and increased apoptosis of granulosa cells. We conclude that the Gja1(Jrt) mutation has a dominant negative effect on Cx43 function in the ovary, rendering the females subfertile. Given these findings, closer examination of reproductive function in ODDD human females is warranted.
Insights
Connexin43 (Cx43) mutations impair female fertility by disrupting ovarian follicle development. The Gja1(Jrt) mutation causes dominant negative effects on Cx43, leading to subfertility in mice.
Area of Science:
- Reproductive biology
- Cell biology
- Genetics
Background:
- Connexin43 (Cx43) is crucial for oogenesis and folliculogenesis.
- Mutations in GJA1, encoding Cx43, cause oculodentodigital dysplasia (ODDD) in humans.
- Cx43 knockout mice exhibit severe defects in germ cell development and follicle growth.
Purpose of the Study:
- To investigate the impact of a dominant loss-of-function Cx43 mutation (Cx43(G60S)) on oogenesis using the Gja1(Jrt)/+ mouse model.
- To determine the reproductive consequences of this disease-linked Cx43 mutation.
Main Methods:
- Characterization of female fertility in Gja1(Jrt)/+ mice.
- Analysis of Cx43 protein levels, phosphorylation, and gap junction assembly in mutant ovaries.
- Assessment of ovarian follicle development, granulosa cell proliferation, and apoptosis.
Main Results:
- Gja1(Jrt)/+ female mice display subfertility, reduced mating success, and smaller litter sizes.
- Mutant ovaries show decreased Cx43 phosphorylation and impaired gap junction formation in granulosa cells.
- Ovaries of mutant mice have fewer pre-ovulatory follicles and diminished response to superovulation, linked to granulosa cell dysfunction.
Conclusions:
- The Gja1(Jrt) mutation exerts a dominant negative effect on Cx43 function within the ovary.
- This Cx43 dysfunction leads to impaired folliculogenesis and subfertility in female mice.
- Reproductive health in human females with ODD, caused by GJA1 mutations, warrants further investigation.

