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Enhanced at puberty 1 (EAP1) is a new transcriptional regulator of the female neuroendocrine reproductive axis
Sabine Heger, … , Wolfgang Sippell, Sergio R. Ojeda
Sabine Heger, … , Wolfgang Sippell, Sergio R. Ojeda
Published August 1, 2007
Citation Information: J Clin Invest. 2007;117(8):2145-2154. https://doi.org/10.1172/JCI31752.
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Research Article Endocrinology Article has an altmetric score of 9

Enhanced at puberty 1 (EAP1) is a new transcriptional regulator of the female neuroendocrine reproductive axis

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Abstract

The initiation of mammalian puberty and the maintenance of female reproductive cycles are events controlled by hypothalamic neurons that secrete the decapeptide gonadotropin-releasing hormone (GnRH). GnRH secretion is, in turn, controlled by changes in neuronal and glial inputs to GnRH-producing neurons. The hierarchical control of the process is unknown, but it requires coordinated regulation of these cell-cell interactions. Here we report the functional characterization of a gene (termed enhanced at puberty 1 [EAP1]) that appears to act as an upstream transcriptional regulator of neuronal networks controlling female reproductive function. EAP1 expression increased selectively at puberty in both the nonhuman primate and rodent hypothalamus. EAP1 encoded a nuclear protein expressed in neurons involved in the inhibitory and facilitatory control of reproduction. EAP1 transactivated genes required for reproductive function, such as GNRH1, and repressed inhibitory genes, such as preproenkephalin. It contained a RING finger domain of the C3HC4 subclass required for this dual transcriptional activity. Inhibition of EAP1 expression, targeted to the rodent hypothalamus via lentivirus-mediated delivery of EAP1 siRNAs, delayed puberty, disrupted estrous cyclicity, and resulted in ovarian abnormalities. These results suggest that EAP1 is a transcriptional regulator that, acting within the neuroendocrine brain, contributes to controlling female reproductive function.

Authors

Sabine Heger, Claudio Mastronardi, Gregory A. Dissen, Alejandro Lomniczi, Ricardo Cabrera, Christian L. Roth, Heike Jung, Francesco Galimi, Wolfgang Sippell, Sergio R. Ojeda

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Figure 6

Site-restricted shRNA-mediated knockdown of the EAP1 gene targeted to the rat POA delays puberty, disrupts estrous cyclicity, and reduces plasma gonadotropin and estradiol levels.

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Site-restricted shRNA-mediated knockdown of the EAP1 gene targeted to th...
EAP1-knockdown animals exhibit: delayed puberty, assessed by the age of first ovulation (A); disruption of estrous cyclicity, determined in daily vaginal lavages (B and C, example of a disrupted cycle); episodes of persistent estrus (D); decreased serum LH (E), FSH (F), and estradiol levels (G). Numbers above bars represent number of animals per group, and error bars are SEM. *P < 0.05, **P < 0.02, and ***P < 0.01 versus LV eGFP–injected controls.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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Referenced in 2 patents
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