Previous Article | Next Article 
Molecular and Cellular Biology, July 2000, p. 5256-5260, Vol. 20, No. 14
0270-7306/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.
Abnormalities of the Genitourinary Tract in
Female Mice Lacking GATA5
Jeffery D.
Molkentin,1,2
Kevin M.
Tymitz,2
James A.
Richardson,3 and
Eric
N.
Olson1,*
Departments of Molecular
Biology1 and
Pathology,3 University of Texas
Southwestern Medical Center at Dallas, Dallas, Texas 75390-9148, and Division of Molecular Cardiovascular Biology,
Children's Hospital Medical Center, Cincinnati, Ohio
45229-30392
Received 14 February 2000/Returned for modification 31 March
2000/Accepted 13 April 2000
Members of the GATA family of transcription factors play important
roles in cell fate specification, differentiation, and morphogenesis
during mammalian development. GATA5, the only one of the
six vertebrate GATA factor genes not yet inactivated in mice, is
expressed in a pattern that overlaps with but is distinct from that of
other GATA factor genes. During mouse embryogenesis, GATA5 is expressed
first in the developing heart and subsequently in the lung,
vasculature, and genitourinary system. To investigate the function of
GATA5 in vivo, we created mice homozygous for a GATA5 null
allele. Homozygous mutants were viable and fertile, but females
exhibited pronounced genitourinary abnormalities that included vaginal
and uterine defects and hypospadias. In contrast, the genitourinary
system was unaffected in male GATA5 mutants. These results
reveal a specific role of GATA5 in development of the female
genitourinary system and suggest that other GATA factors may have
functions overlapping those of GATA5 in other tissues.
*
Corresponding author. Mailing address: Department of
Molecular Biology, University of Texas Southwestern Medical Center at Dallas, 6000 Harry Hines Blvd., Dallas, TX 75390-9148. Phone: (214)
648-1187. Fax: (214) 648-1196. E-mail:
eolson{at}hamon.swmed.edu.
Molecular and Cellular Biology, July 2000, p. 5256-5260, Vol. 20, No. 14
0270-7306/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.
This article has been cited by other articles:
-
Chen, B., Yates, E., Huang, Y., Kogut, P., Ma, L., Turner, J. R., Tao, Y., Camoretti-Mercado, B., Lang, D., Svensson, E. C., Garcia, J. G. N., Gruber, P. J., Morrisey, E. E., Solway, J.
(2009). Alternative promoter and GATA5 transcripts in mouse. Am. J. Physiol. Gastrointest. Liver Physiol.
297: G1214-G1222
[Abstract]
[Full Text]
-
Ray, S., Dutta, D., Rumi, M. A. K., Kent, L. N., Soares, M. J., Paul, S.
(2009). Context-dependent Function of Regulatory Elements and a Switch in Chromatin Occupancy between GATA3 and GATA2 Regulate Gata2 Transcription during Trophoblast Differentiation. J. Biol. Chem.
284: 4978-4988
[Abstract]
[Full Text]
-
Viger, R. S., Guittot, S. M., Anttonen, M., Wilson, D. B., Heikinheimo, M.
(2008). Role of the GATA Family of Transcription Factors in Endocrine Development, Function, and Disease. Mol. Endocrinol.
22: 781-798
[Abstract]
[Full Text]
-
Khandekar, M., Brandt, W., Zhou, Y., Dagenais, S., Glover, T. W., Suzuki, N., Shimizu, R., Yamamoto, M., Lim, K.-C., Engel, J. D.
(2007). A Gata2 intronic enhancer confers its pan-endothelia-specific regulation. Development
134: 1703-1712
[Abstract]
[Full Text]
-
Ackerman, K. G., Wang, J., Luo, L., Fujiwara, Y., Orkin, S. H., Beier, D. R.
(2007). Gata4 Is Necessary for Normal Pulmonary Lobar Development. Am. J. Respir. Cell Mol. Bio.
36: 391-397
[Abstract]
[Full Text]
-
Maeda, Y., Dave, V., Whitsett, J. A.
(2007). Transcriptional Control of Lung Morphogenesis. Physiol. Rev.
87: 219-244
[Abstract]
[Full Text]
-
Xin, M., Davis, C. A., Molkentin, J. D., Lien, C.-L., Duncan, S. A., Richardson, J. A., Olson, E. N.
(2006). A threshold of GATA4 and GATA6 expression is required for cardiovascular development. Proc. Natl. Acad. Sci. USA
103: 11189-11194
[Abstract]
[Full Text]
-
Huggins, G. S., Wong, J. Y.Y., Hankinson, S. E., De Vivo, I.
(2006). GATA5 Activation of the Progesterone Receptor Gene Promoter in Breast Cancer Cells Is Influenced by the +331G/A Polymorphism. Cancer Res.
66: 1384-1390
[Abstract]
[Full Text]
-
Ritz-Laser, B., Mamin, A., Brun, T., Avril, I., Schwitzgebel, V. M., Philippe, J.
(2005). The Zinc Finger-Containing Transcription Factor Gata-4 Is Expressed in the Developing Endocrine Pancreas and Activates Glucagon Gene Expression. Mol. Endocrinol.
19: 759-770
[Abstract]
[Full Text]
-
Afouda, B. A., Ciau-Uitz, A., Patient, R.
(2005). GATA4, 5 and 6 mediate TGF{beta} maintenance of endodermal gene expression in Xenopus embryos. Development
132: 763-774
[Abstract]
[Full Text]
-
Khandekar, M., Suzuki, N., Lewton, J., Yamamoto, M., Engel, J. D.
(2004). Multiple, Distant Gata2 Enhancers Specify Temporally and Tissue-Specific Patterning in the Developing Urogenital System. Mol. Cell. Biol.
24: 10263-10276
[Abstract]
[Full Text]
-
Divine, J. K., Staloch, L. J., Haveri, H., Jacobsen, C. M., Wilson, D. B., Heikinheimo, M., Simon, T. C.
(2004). GATA-4, GATA-5, and GATA-6 activate the rat liver fatty acid binding protein gene in concert with HNF-1{alpha}. Am. J. Physiol. Gastrointest. Liver Physiol.
287: G1086-G1099
[Abstract]
[Full Text]
-
van Wering, H. M., Bosse, T., Musters, A., de Jong, E., de Jong, N., Hogen Esch, C. E., Boudreau, F., Swain, G. P., Dowling, L. N., Montgomery, R. K., Grand, R. J., Krasinski, S. D.
(2004). Complex regulation of the lactase-phlorizin hydrolase promoter by GATA-4. Am. J. Physiol. Gastrointest. Liver Physiol.
287: G899-G909
[Abstract]
[Full Text]
-
Vanpoucke, G., Goossens, S., De Craene, B., Gilbert, B., van Roy, F., Berx, G.
(2004). GATA-4 and MEF2C transcription factors control the tissue-specific expression of the {alpha}T-catenin gene CTNNA3. Nucleic Acids Res
32: 4155-4165
[Abstract]
[Full Text]
-
Viger, R. S., Taniguchi, H., Robert, N. M., Tremblay, J. J.
(2004). The 25th Volume: Role of the GATA Family of Transcription Factors in Andrology. J Androl
25: 441-452
[Full Text]
-
Takeda, M., Obayashi, K., Kobayashi, A., Maeda, M.
(2004). A Unique Role of an Amino Terminal 16-Residue Region of Long-Type GATA-6. J Biochem
135: 639-650
[Abstract]
[Full Text]
-
Sun-Wada, G.-H., Kamei, Y., Wada, Y., Futai, M.
(2004). Regulatory Elements Directing Gut Expression of the GATA6 Gene during Mouse Early Development. J Biochem
135: 165-169
[Abstract]
[Full Text]
-
LaVoie, H. A.
(2003). The Role of GATA in Mammalian Reproduction. Exp. Biol. Med.
228: 1282-1290
[Abstract]
[Full Text]
-
Latinkic, B. V., Kotecha, S., Mohun, T. J.
(2003). Induction of cardiomyocytes by GATA4 in Xenopus ectodermal explants. Development
130: 3865-3876
[Abstract]
[Full Text]
-
Dusing, M. R., Florence, E. A., Wiginton, D. A.
(2003). High-level activation by a duodenum-specific enhancer requires functional GATA binding sites. Am. J. Physiol. Gastrointest. Liver Physiol.
284: G1053-G1065
[Abstract]
[Full Text]
-
Robert, N. M., Tremblay, J. J., Viger, R. S.
(2002). Friend of GATA (FOG)-1 and FOG-2 Differentially Repress the GATA-Dependent Activity of Multiple Gonadal Promoters. Endocrinology
143: 3963-3973
[Abstract]
[Full Text]
-
Nemer, G., Nemer, M.
(2002). Cooperative interaction between GATA5 and NF-ATc regulates endothelial-endocardial differentiation of cardiogenic cells. Development
129: 4045-4055
[Abstract]
[Full Text]
-
Bruneau, B. G.
(2002). Transcriptional Regulation of Vertebrate Cardiac Morphogenesis. Circ. Res.
90: 509-519
[Abstract]
[Full Text]
-
Tremblay, J. J., Robert, N. M., Viger, R. S.
(2001). Modulation of Endogenous GATA-4 Activity Reveals Its Dual Contribution to Mullerian Inhibiting Substance Gene Transcription in Sertoli Cells. Mol. Endocrinol.
15: 1636-1650
[Abstract]
[Full Text]
-
Krasinski, S. D., Van Wering, H. M., Tannemaat, M. R., Grand, R. J.
(2001). Differential activation of intestinal gene promoters: functional interactions between GATA-5 and HNF-1{alpha}. Am. J. Physiol. Gastrointest. Liver Physiol.
281: G69-G84
[Abstract]
[Full Text]
-
Costa, R. H., Kalinichenko, V. V., Lim, L.
(2001). Transcription factors in mouse lung development and function. Am. J. Physiol. Lung Cell. Mol. Physiol.
280: L823-L838
[Abstract]
[Full Text]
-
Tremblay, J. J., Viger, R. S.
(2001). Nuclear Receptor Dax-1 Represses the Transcriptional Cooperation Between GATA-4 and SF-1 in Sertoli Cells. Biol. Reprod.
64: 1191-1199
[Abstract]
[Full Text]
-
Tremblay, J. J., Viger, R. S.
(2001). GATA Factors Differentially Activate Multiple Gonadal Promoters through Conserved GATA Regulatory Elements. Endocrinology
142: 977-986
[Abstract]
[Full Text]
-
Reiter, J., Kikuchi, Y, Stainier, D.
(2001). Multiple roles for Gata5 in zebrafish endoderm formation. Development
128: 125-135
[Abstract]
-
Molkentin, J. D.
(2000). The Zinc Finger-containing Transcription Factors GATA-4, -5, and -6. UBIQUITOUSLY EXPRESSED REGULATORS OF TISSUE-SPECIFIC GENE EXPRESSION. J. Biol. Chem.
275: 38949-38952
[Full Text]