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This version published online on July 5, 2007
Endocrinology, doi:10.1210/en.2007-0634
A more recent version of this article appeared on November 1, 2007
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Submitted on May 14, 2007
Accepted on June 22, 2007

Expression of a tumor related gene network increases in the mammalian hypothalamus at the time of female puberty

Christian L. Roth, Claudio Mastronardi, Alejandro Lomniczi, Hollis Wright, Ricardo Cabrera, Alison E. Mungenast, Sabine Heger, Heike Jung, Christopher Dubay, and Sergio R. Ojeda*

Division of Neuroscience, Genetics Resources and Informatics Program, Oregon National Primate Research Center/Oregon Health & Science University, Beaverton, OR 97006, USA

* To whom correspondence should be addressed. E-mail: ojedas{at}ohsu.edu.

Much has been learned in recent years about the central mechanisms controlling the initiation of mammalian puberty. It is now clear that this process requires the interactive participation of several genes. Using a combination of high throughput, molecular and bioinformatics strategies, in combination with a system biology approach, we singled out from the hypothalamus of nonhuman primates and rats a group of related genes whose expression increases at the time of female puberty. Although these genes (henceforth termed tumor related genes, TRGs) have diverse cellular functions, they share the common feature of having been earlier identified as involved in tumor suppression/tumor formation. A prominent member of this group is KiSS1, a gene recently shown to be essential for the occurrence of puberty. Cis-regulatory analysis revealed the presence of a hierarchically arranged gene set containing five major hubs (CDP/CUTL1, MAF, p53, YY1, and USF2) controlling the network at the transcriptional level. In turn, these hubs are heavily connected to non-TRGs involved in the transcriptional regulation of the pubertal process. TRGs may be expressed in the mammalian hypothalamus as components of a regulatory gene network that facilitates and integrates cellular and cell-cell communication programs required for the acquisition of female reproductive competence.


Key words: Female puberty • hypothalamus • cDNA microarrays • tumor suppressor genes • oncogenes • gene networks




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S. B. Seminara
Converging at Puberty's Hub
Endocrinology, November 1, 2007; 148(11): 5145 - 5146.
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