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Transgenic Rodent Assay for Quantifying Male Germ Cell Mutant Frequency
Published on: August 6, 2014
Male sexual dysfunction in mice bearing targeted mutant alleles of the PEA3 ets gene
M A Laing1, S Coonrod, B T Hinton
1Institute for Molecular Biology and Biotechnology, McMaster University, Hamilton, Ontario, Canada L8S 4K1.
Abstract:
PEA3, a member of the Ets family of transcriptional regulatory proteins, is expressed in a unique spatial and temporal pattern during mouse embryogenesis; its overexpression is positively correlated with HER2-mediated breast tumorigenesis in both humans and mice. To determine whether PEA3 plays a part in development and oncogenesis and to uncover its normal physiological role, we generated mice lacking functional PEA3 by gene targeting in embryonic stem cells. PEA3(-/-) mice arose from heterozygous crosses with the expected Mendelian frequency, revealing that PEA3 is dispensable for embryogenesis. PEA3 mutant mice displayed no overt phenotype and lived a normal life span. However, PEA3-deficient males failed to reproduce. PEA3 is expressed in several male sexual organs, but gross and histological analyses of the organs from PEA3(-/-) mice revealed no abnormalities. Spermatogenesis and spermiogenesis also appeared normal in mice homozygous for the PEA3 mutation, and their sperm were capable of fertilizing eggs in vitro. PEA3(-/-) males engaged in normal mating behavior, but they did not set copulatory plugs and sperm could not be detected in the uteri of females that had mated with PEA3(-/-) males. Erections could be evoked by abdominal pressure in PEA3-deficient male mice, and the results of in vitro experiments revealed that the corpus cavernosum isolated from PEA3 mutant males relaxed in response to acetylcholine. Therefore, the infertility of PEA3 mutant males involves either mechanisms proximal to the cavernosal smooth muscle or an ejaculatory dysfunction. However, PEA3 mutant mice are phenotypically distinguishable from other knockout mice with such deficits and thus provide a unique model for further investigation of male sexual dysfunction.
Insights
Mice lacking PEA3 (a transcriptional regulator) develop normally but exhibit male infertility due to ejaculatory dysfunction, offering a unique model for studying reproductive health.
Area of Science:
- Developmental Biology
- Reproductive Biology
- Molecular Genetics
Background:
- PEA3, an Ets family transcriptional regulator, has a unique expression pattern during embryogenesis.
- Overexpression of PEA3 is linked to HER2-mediated breast cancer in humans and mice.
- The normal physiological role of PEA3 in development and oncogenesis remains unclear.
Purpose of the Study:
- To investigate the role of PEA3 in mouse embryogenesis and oncogenesis.
- To uncover the normal physiological function of PEA3.
- To characterize the phenotype of PEA3-deficient mice.
Main Methods:
- Gene targeting in embryonic stem cells to generate PEA3 knockout mice (PEA3-/-).
- Assessment of embryogenesis, physical phenotype, lifespan, and reproductive capacity in PEA3 mutant mice.
- Gross and histological analyses of male reproductive organs.
- In vitro fertilization assays and mating behavior observations.
- In vitro studies of corpus cavernosum relaxation.
Main Results:
- PEA3 is dispensable for embryogenesis, with PEA3-/- mice showing no overt phenotype and normal lifespan.
- PEA3-deficient males are infertile, failing to reproduce despite normal mating behavior.
- Reproductive organs and spermatogenesis appear normal, and sperm are capable of in vitro fertilization.
- Infertility in PEA3-/- males is associated with the absence of copulatory plugs and sperm in mated females.
- Erections can be induced, and corpus cavernosum exhibits normal relaxation responses, suggesting ejaculatory dysfunction.
Conclusions:
- PEA3 is not essential for embryogenesis or general health.
- PEA3 plays a critical role in male reproduction, specifically in the ejaculatory process.
- PEA3 mutant mice represent a distinct model for investigating the mechanisms of male sexual and ejaculatory dysfunction.

