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Research Papers
Laboratoire de Génétique Moléculaire, Institut de Recherches Cliniquesde Montréal, Québec, Canada.
Abstract
The pituitary gland contains six distinct hormone-producing cell types that arise sequentially during organogenesis. The first cells to differentiate are those that express the pro-opiomelanocortin (POMC) gene in the anterior pituitary lobe. The other lineages, which appear later, include cells that are dependent on the POU factor Pit-1 and another POMC-expressing lineage in the intermediate pituitary lobe. Using AtT-20 cells as a model for early expression of POMC in the anterior pituitary, we have defined a regulatory element conferring cell specificity of transcription and cloned a cognate transcription factor. This factor, Ptx1 (pituitary homeo box 1), contains a homeo box related to those of the anterior-specific genes bicoid and orthodenticle in Drosophila, and Otx-1 and Otx-2 in mammals. Ptx1 activates transcription upon binding a sequence related to the Drosophila bicoid target sites. Ptx1 is the only nuclear factor of this DNA-binding specificity that is detected in AtT-20 cells, and it is expressed at high levels in a subset of adult anterior pituitary cells that express POMC. However, Ptx1 is expressed in most cells of Rathke's pouch at an early time during pituitary development and before final differentiation of hormone-producing cells. Thus, Ptx1 may have a role in differentiation of pituitary cells, and its early expression pattern suggests that it may have a role in pituitary formation. In the adult pituitary gland, Ptx1 appears to be recruited for cell-specific transcription of the POMC gene.
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X Yu, T. St Amand, S Wang, G Li, Y Zhang, Y. Hu, L Nguyen, M. Qiu, and Y. Chen Differential expression and functional analysis of Pitx2 isoforms in regulation of heart looping in the chick Development, January 3, 2001; 128(6): 1005 - 1013. [Abstract] [PDF] |
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M Treier, S O'Connell, A Gleiberman, J Price, D. Szeto, R Burgess, P. Chuang, A. McMahon, and M. Rosenfeld Hedgehog signaling is required for pituitary gland development Development, January 2, 2001; 128(3): 377 - 386. [Abstract] [PDF] |
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S. Lopez, M.-L. Island, J. Drouin, M.-T. Bandu, N. Christeff, N. Darracq, R. Barbey, J. Doly, D. Thomas, and S. Navarro Repression of Virus-Induced Interferon A Promoters by Homeodomain Transcription Factor Ptx1 Mol. Cell. Biol., October 15, 2000; 20(20): 7527 - 7540. [Abstract] [Full Text] |
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K. Kozlowski and M. A. Walter Variation in residual PITX2 activity underlies the phenotypic spectrum of anterior segment developmental disorders Hum. Mol. Genet., September 1, 2000; 9(14): 2131 - 2139. [Abstract] [Full Text] [PDF] |
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R. H. Skelly, M. Korbonits, A. Grossman, G. M. Besser, J. P. Monson, J. F. Geddes, and J. M. Burrin Expression of the Pituitary Transcription Factor Ptx-1, But Not That of the Trans-Activating Factor Prop-1, Is Reduced in Human Corticotroph Adenomas and Is Associated with Decreased {alpha}-Subunit Secretion J. Clin. Endocrinol. Metab., July 1, 2000; 85(7): 2537 - 2542. [Abstract] [Full Text] |
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G. Poulin, M. Lebel, M. Chamberland, F. W. Paradis, and J. Drouin Specific Protein-Protein Interaction between Basic Helix-Loop-Helix Transcription Factors and Homeoproteins of the Pitx Family Mol. Cell. Biol., July 1, 2000; 20(13): 4826 - 4837. [Abstract] [Full Text] |
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M. Maira, C. Martens, A. Philips, and J. Drouin Heterodimerization between Members of the Nur Subfamily of Orphan Nuclear Receptors as a Novel Mechanism for Gene Activation Mol. Cell. Biol., November 1, 1999; 19(11): 7549 - 7557. [Abstract] [Full Text] [PDF] |
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