Increasing evidence points to a critical role of podocytes in the initiation and progression of various glomerular diseases. We made the unexpected finding that under pathological conditions, with foot process effacement and proteinuria, podocytes express the molecule B7-1 (also termed CD80), a transmembrane protein expressed on the surface of B-cells and antigen presenting cells (APC). On B-cells and APC, B7-1 provides a costimulatory signal for T-cells through binding to its receptors CD28 and CTLA-4. The immune function of B7-1 has been well described. Much less is known about B7-1 expression and function in non-bone marrow derived cells. Here we provide evidence for a novel role of B7-1 in podocytes. Our preliminary data suggest that up regulation of B7-1 in podocytes contributes to the pathogenesis of proteinuria by altering glomerular permselectivity and provide a novel molecular target to tackle proteinuric kidney disease. Based on our observations, we propose a new working model/hypothesis: B7-1 expression by podocytes represents a pathogenic mechanism for disruption of the glomerular filtration apparatus. B7-1 may contribute to the pathogenesis of proteinuria in a dual fashion: i) by induction of foot process effacement and sequestration of vital SD molecules away from their normal sites of action, thereby altering glomerular permselectivity and ii) by modulating podocyte-matrix adhesion. We propose three Specific Aims to test our central hypothesis:
Specific Aim 1 will elucidate the mechanism by which B7-1 orchestrates the reorganization of the podocyte actin cytoskeleton and SD complex.
Specific Aim 2 will explore the role of B7-1 in podocyte adhesion to extracellular matrix.
Specific Aim3 will establish the contribution of B7-1 expression in podocytes to the pathogenesis of proteinuric glomerular diseases. If our hypothesis is correct, the work proposed here will have broad significance in the long-term, because it will establish insight into the dynamics of the interaction between B7-1, foot process effacement, the actin cytoskeleton and the SD complex in nephrotic syndrome/FSGS. This should in the long-term enable us to develop novel, selective podocyte-protective therapies that tackle proteinuria and progression of glomerulosclerosis by blocking the activity of B7-1 in podocytes.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK062472-04
Application #
7120616
Study Section
Pathology A Study Section (PTHA)
Program Officer
Mullins, Christopher V
Project Start
2004-04-01
Project End
2009-03-31
Budget Start
2006-04-01
Budget End
2007-03-31
Support Year
4
Fiscal Year
2006
Total Cost
$388,965
Indirect Cost
Name
Mount Sinai School of Medicine
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
078861598
City
New York
State
NY
Country
United States
Zip Code
10029
Christov, Marta; Clark, Abbe R; Corbin, Braden et al. (2018) Inducible podocyte-specific deletion of CTCF drives progressive kidney disease and bone abnormalities. JCI Insight 3:
Buvall, Lisa; Wallentin, Hanna; Sieber, Jonas et al. (2017) Synaptopodin Is a Coincidence Detector of Tyrosine versus Serine/Threonine Phosphorylation for the Modulation of Rho Protein Crosstalk in Podocytes. J Am Soc Nephrol 28:837-851
Dotimas, James R; Lee, Austin W; Schmider, Angela B et al. (2016) Diabetes regulates fructose absorption through thioredoxin-interacting protein. Elife 5:
Mundel, Peter (2016) Podocyte-Targeted Treatment for Proteinuric Kidney Disease. Semin Nephrol 36:459-462
Weins, Astrid; Wong, Jenny S; Basgen, John M et al. (2015) Dendrin ablation prolongs life span by delaying kidney failure. Am J Pathol 185:2143-57
Yoon, Kyoung Wan; Byun, Sanguine; Kwon, Eunjeong et al. (2015) Control of signaling-mediated clearance of apoptotic cells by the tumor suppressor p53. Science 349:1261669
Mundel, Peter; Greka, Anna (2015) Developing therapeutic 'arrows' with the precision of William Tell: the time has come for targeted therapies in kidney disease. Curr Opin Nephrol Hypertens 24:388-92
Fiorina, Paolo; Vergani, Andrea; Bassi, Roberto et al. (2014) Role of podocyte B7-1 in diabetic nephropathy. J Am Soc Nephrol 25:1415-29
Kampe, Kapil; Sieber, Jonas; Orellana, Jana Marina et al. (2014) Susceptibility of podocytes to palmitic acid is regulated by fatty acid oxidation and inversely depends on acetyl-CoA carboxylases 1 and 2. Am J Physiol Renal Physiol 306:F401-9
Balbas, Minna D; Burgess, Michael R; Murali, Rajmohan et al. (2014) MAGI-2 scaffold protein is critical for kidney barrier function. Proc Natl Acad Sci U S A 111:14876-81

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