The luminal brush border of the renal proximal tubule is highly specialized for protein reabsorption by endocytosis. This endosomal compartment is an important site of hormone and iron metabolism, as well as a portal of entry for nephrotoxins. New methods in cell biology, including freeflow electrophoresis and flow cytometry, allow us to isolate elements of the proximal tubular endosomal pathway with diverse structural and functional properties. These elements include clathrin coated vesicles, endosomal vesicles, endosomal vacuoles, and dense apical tubules. Our hypothesis is that compartments of the renal cortical endosomal pathway have different protein and lipid components, and these components determine their function in the pathway. Endosomes undergo efficient and highly specific fusion events with select compartments of intracellular vesicles. To delineate the molecular machinery which governs fusion events, we have reconstituted a cell free fusion assay in vitro. We will test whether small molecular weight G-- proteins mediate fusion specificity. Understanding the structure and function of the renal proximal tubular endosomal pathway may explain some forms of nephrotoxicity. Several lines of evidence suggest that disruption of the endosomal pathway is an important mediator of aminoglycoside nephrotoxicity. To determine whether the changes in the endosomal pathway associated with aminoglycoside treatment are mediators of nephrotoxicity or an epiphenomenon we will correlate endosomal changes with documented patterns of aminoglycoside injury. Hence we will determine the role of endosomal disruption in nephrotoxic injury.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
First Independent Research Support & Transition (FIRST) Awards (R29)
Project #
5R29DK046117-03
Application #
2145323
Study Section
General Medicine B Study Section (GMB)
Project Start
1993-01-01
Project End
1995-12-31
Budget Start
1995-01-01
Budget End
1995-12-31
Support Year
3
Fiscal Year
1995
Total Cost
Indirect Cost
Name
University of Wisconsin Madison
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Klassen, R Bryan S; Allen, Patricia L; Batuman, Vecihi et al. (2005) Light chains are a ligand for megalin. J Appl Physiol 98:257-63
Becker, Bryan N; Cheng, Hui-fang; Hammond, Timothy G et al. (2004) The type 1 angiotensin II receptor tail affects receptor targeting, internalization, and membrane fusion properties. Mol Pharmacol 65:362-9
Zhuo, Jia L; Imig, John D; Hammond, Timothy G et al. (2002) Ang II accumulation in rat renal endosomes during Ang II-induced hypertension: role of AT(1) receptor. Hypertension 39:116-21
Kaysen, J H; Campbell, W C; Majewski, R R et al. (1999) Select de novo gene and protein expression during renal epithelial cell culture in rotating wall vessels is shear stress dependent. J Membr Biol 168:77-89
Imig, J D; Navar, G L; Zou, L X et al. (1999) Renal endosomes contain angiotensin peptides, converting enzyme, and AT(1A) receptors. Am J Physiol 277:F303-11
Batuman, V; Verroust, P J; Navar, G L et al. (1998) Myeloma light chains are ligands for cubilin (gp280). Am J Physiol 275:F246-54
Burow, M E; Weldon, C B; Tang, Y et al. (1998) Differences in susceptibility to tumor necrosis factor alpha-induced apoptosis among MCF-7 breast cancer cell variants. Cancer Res 58:4940-6
Hammond, T G; Goda, F O; Navar, G L et al. (1998) Membrane potential mediates H(+)-ATPase dependence of ""degradative pathway"" endosomal fusion. J Membr Biol 162:157-67
Moestrup, S K; Kozyraki, R; Kristiansen, M et al. (1998) The intrinsic factor-vitamin B12 receptor and target of teratogenic antibodies is a megalin-binding peripheral membrane protein with homology to developmental proteins. J Biol Chem 273:5235-42
Hammond, T G; Majewski, R R; Kaysen, J H et al. (1997) Gentamicin inhibits rat renal cortical homotypic endosomal fusion: role of megalin. Am J Physiol 272:F117-23

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