Kidney development is largely the result of a unique cellular transdifferentiation event wherein metanephric mesenchymal cells become epithelial cells which form the glomerulus and tubules of mature nephrons. These events are initiated by a poorly understood reciprocal inductive interaction between epithelial cells of the ureteric bud and the proliferating mesenchyme. These dramatic cellular differentiation events during nephrogenesis must require a considerable reprogramming of gene expression in the nucleus and therefore must be mediated in part by a set of kidney-specific transcription factors. However, little is currently known about transcription factors in the kidney which function specifically to mediate the mesenchymal-epithelial transition and/or maintain the differentiated phenotype. The forkhead domain family of transcription factors share a highly conserved approximately 110 amino acid motif which mediates sequence- specific DNA binding. Almost all known forkhead -domain containing genes function as regulators of development and pattern formation in early embryogenesis. We have obtained a novel forkhead domain transcription factor, MFH-1 (Mesenchyme Forkhead-1) and preliminary studies suggest that it is expressed in condensing metanephric mesenchyme at a critical stage in the mesenchymal-epithelial transition. Nothing is known of the structure/function or role in kidney development of MFH-1. In this proposal, we will perform a comprehensive developmental and biochemical analysis for MFH-I specifically, we will l) determine the spatio-temporal, cell-type-specific expression patterns in murine development and in the kidney organ culture system in vitro using high resolution in-situ hybridization and immunohistochemistry, 2) isolate and characterize the genomic clones/ promotor regions and localize genetic elements required for kidney-cell specific expression, 3) isolate the DNA binding sites recognized by MFH-1 protein and utilize this information to search for potential target genes, and 4) determine the biological consequences of ablating MFH-1 expression using antisense oligonucleotides in the kidney organ culture system and in established cell lines. This analysis should provide a comprehensive look at a novel forkhead domain transcription factor in murine kidney organogenesis and provide new insights into the regulation of differentiation during the nephrogenic process.

Project Start
Project End
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
1
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Vanderbilt University Medical Center
Department
Type
DUNS #
004413456
City
Nashville
State
TN
Country
United States
Zip Code
37212
Venkov, Christo D; Link, Andrew J; Jennings, Jennifer L et al. (2007) A proximal activator of transcription in epithelial-mesenchymal transition. J Clin Invest 117:482-91
Teng, Yingqi; Zeisberg, Michael; Kalluri, Raghu (2007) Transcriptional regulation of epithelial-mesenchymal transition. J Clin Invest 117:304-6
Borza, Dorin-Bogdan; Neilson, Eric G; Hudson, Billy G (2003) Pathogenesis of Goodpasture syndrome: a molecular perspective. Semin Nephrol 23:522-31
Okada, Hirokazu; Inoue, Tsutomu; Kanno, Yoshihiko et al. (2003) Selective depletion of fibroblasts preserves morphology and the functional integrity of peritoneum in transgenic mice with peritoneal fibrosing syndrome. Kidney Int 64:1722-32
Neilson, Eric G; Plieth, David; Venkov, Christo (2003) Epithelial-mesenchymal transitions and the intersecting cell fate of fibroblasts and metastatic cancer cells. Trans Am Clin Climatol Assoc 114:87-100; discussion 100-1
Xue, Chengsen; Plieth, David; Venkov, Christo et al. (2003) The gatekeeper effect of epithelial-mesenchymal transition regulates the frequency of breast cancer metastasis. Cancer Res 63:3386-94
Hudson, Billy G; Tryggvason, Karl; Sundaramoorthy, Munirathinam et al. (2003) Alport's syndrome, Goodpasture's syndrome, and type IV collagen. N Engl J Med 348:2543-56
Strutz, Frank; Zeisberg, Michael; Ziyadeh, Fuad N et al. (2002) Role of basic fibroblast growth factor-2 in epithelial-mesenchymal transformation. Kidney Int 61:1714-28
Iwano, M; Fischer, A; Okada, H et al. (2001) Conditional abatement of tissue fibrosis using nucleoside analogs to selectively corrupt DNA replication in transgenic fibroblasts. Mol Ther 3:149-59
Okada, H; Ban, S; Nagao, S et al. (2000) Progressive renal fibrosis in murine polycystic kidney disease: an immunohistochemical observation. Kidney Int 58:587-97