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- Differential CRE Expression in Lhrh-cre and GnRH-cre Alleles and the Impact on Fertility in Otx2-Flox Mice.
Differential CRE Expression in Lhrh-cre and GnRH-cre Alleles and the Impact on Fertility in Otx2-Flox Mice.
Citation | “Differential Cre Expression In Lhrh-Cre And Gnrh-Cre Alleles And The Impact On Fertility In Otx2-Flox Mice.”. Neuroendocrinology, pp. 328-342. . |
Center | UCSD-UCLA |
Author | Hanne M Hoffmann, Rachel Larder, Jessica S Lee, Rachael J Hu, Crystal Trang, Brooke M Devries, Daniel D Clark, Pamela L Mellon |
Keywords | Cre-LoxP, fertility, Gonadotropin-releasing hormone, Lhrh, Otx2 |
Abstract |
There is an increasing trend in studies utilizing cell-specific deletion of genes through conditional gene deletion by CRE recombination. Despite numerous advantages, this strategy also has limitations such as ectopic CRE-expression and germline recombination. Two commonly used gonadotropin-releasing hormone (Gnrh)-driven CRE-expressing mice both target GnRH neurons. However, a direct comparison of the cells targeted and their phenotypic outcome have not yet been presented. To compare where recombination takes place, we crossed the Gnrh-cre and Lhrh-cre lines with the Rosa26-LacZ reporter mouse. Lhrh-cre allowed recombination of the Rosa26-LacZ gene in ∼700 cells, which is comparable to the GnRH neuronal population. Surprisingly, there were > 20 times more LacZ expressing cells in the adult Gnrh-cre:Rosa26-LacZ than the Lhrh-cre:Rosa26-LacZ brain. The greatest differences in targeting of the Gnrh-cre and Lhrh-cre lines were found in the septum, the suprachiasmatic nucleus, and the septohypothalamic area. This difference in cells targeted was present from embryonic day 12. A prior study using the Gnrh-cre to delete the transcription factor Otx2 found fewer GnRH neurons, leading to male and female subfertility. To recapitulate this study, we performed a fertility assay in Otx2:Lhrh-cre mice. We confirmed the requirement for Otx2 in GnRH neuron development, fertility and correct gonadotropin hormone release in Otx2:Lhrh-cre males, but the subfertility was more modest than in Otx2:Gnrh-cre and absent in female Otx2:Lhrh-cre. This suggests that ectopic expression of Gnrh-cre contributes to the reproductive phenotype observed. Finally, the Cre alleles caused germline recombination of the flox allele when transmitted from either parent, generating embryonic lethal knock-out offspring, producing smaller live litters. |
Year of Publication |
2019
|
Journal |
Neuroendocrinology
|
Volume |
108
|
Issue |
4
|
Number of Pages |
328-342
|
Date Published |
12/2019
|
ISSN Number |
1423-0194
|
DOI |
10.1159/000497791
|
Alternate Journal |
Neuroendocrinology
|
PMID |
30739114
|
PMCID |
PMC6753941
|
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