Kidney organogenesis results from an interaction of ureteric bud and metanephric mesenchyme. In the presence of the ureteric bud, mesenchymal cells expand and then convert to epithelia and form nephrons; in the absence of the ureteric bud these cells die by apoptosis. Hence, the ureteric bud has been called the inducer of the nephron, but neither its signals nor their cellular targets in the mesenchyme have been known. Further, an unequivocal identification and isolation of an epithelial progenitor is lacking. My long-term goal is to discover the mechanisms that produce nephrons from mesenchymal cells. To do this, I decided to identify ureteric bud factors that regulate the mesenchyme. I produced cell lines from the ureteric bud, and by using freshly isolated mesenchyme to screen proteins, I purified a series of factors that cause growth or cell conversion. One inducer is Leukemia Inhibitory Factor (LIF), an IL-6 type cytokine. LIF is expressed by the ureteric bud and deletion of its receptor hinders kidney development. Thus, LIF is the first authentic and necessary inducer of nephrogenesis. I now propose to identify epithelial precursors in the metanephric mesenchyme. This is possible because after the addition of LIF, nephrons appear from discrete clusters of cells that are visible by low power magnification. The cells that give rise to this phenomenon are easily isolated, permitting lineage, gene expression, and morphologic studies to confirm that they are the progenitors of the nephron. Using these isolated progenitors, we then determine if interaction with the ureteric bud is necessary and sufficient to induce their conversion, or whether other intra-mesenchymal signals are required. In fact, a protein from kidney stroma targets epithelial precursors and permits induction by LIF, and I propose to identify this factor. These proposals fractionate and then reconstitute the metanephric mesenchyme from its components to identify epithelial precursors and show that combinatorial signaling by factors from the ureteric bud and from the stroma are responsible for converting precursor cells to nephrons.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK058872-03
Application #
6635337
Study Section
General Medicine B Study Section (GMB)
Program Officer
Wilder, Elizabeth L
Project Start
2001-03-01
Project End
2005-12-31
Budget Start
2003-03-01
Budget End
2003-12-31
Support Year
3
Fiscal Year
2003
Total Cost
$326,081
Indirect Cost
Name
Columbia University (N.Y.)
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
621889815
City
New York
State
NY
Country
United States
Zip Code
10032
Correnti, Colin; Richardson, Vera; Sia, Allyson K et al. (2012) Siderocalin/Lcn2/NGAL/24p3 does not drive apoptosis through gentisic acid mediated iron withdrawal in hematopoietic cell lines. PLoS One 7:e43696
Paragas, Neal; Qiu, Andong; Zhang, Qingyin et al. (2011) The Ngal reporter mouse detects the response of the kidney to injury in real time. Nat Med 17:216-22
Sola-Del Valle, David A; Mohan, Sumit; Cheng, Jen-Tse et al. (2011) Urinary NGAL is a useful clinical biomarker of HIV-associated nephropathy. Nephrol Dial Transplant 26:2387-90
Bao, Guanhu; Clifton, Matthew; Hoette, Trisha M et al. (2010) Iron traffics in circulation bound to a siderocalin (Ngal)-catechol complex. Nat Chem Biol 6:602-9
Parravicini, Elvira; Nemerofsky, Sheri L; Michelson, Kenneth A et al. (2010) Urinary neutrophil gelatinase-associated lipocalin is a promising biomarker for late onset culture-positive sepsis in very low birth weight infants. Pediatr Res 67:636-40
Paragas, Neal; Nickolas, Thomas L; Wyatt, Christina et al. (2009) Urinary NGAL marks cystic disease in HIV-associated nephropathy. J Am Soc Nephrol 20:1687-92
Huynh, Trang K; Bateman, David A; Parravicini, Elvira et al. (2009) Reference values of urinary neutrophil gelatinase-associated lipocalin in very low birth weight infants. Pediatr Res 66:528-32
Li, Jau Yi; Paragas, Neal; Ned, Renee M et al. (2009) Scara5 is a ferritin receptor mediating non-transferrin iron delivery. Dev Cell 16:35-46
Schmidt-Ott, Kai M; Barasch, Jonathan (2008) WNT/beta-catenin signaling in nephron progenitors and their epithelial progeny. Kidney Int 74:1004-8
Nickolas, Thomas L; Barasch, Jonathan; Devarajan, Prasad (2008) Biomarkers in acute and chronic kidney disease. Curr Opin Nephrol Hypertens 17:127-32

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